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Yazaki",{"VOID":453},"A5078897737",{"url":20,"publisher":455,"properties":20},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":456,"slug":10,"properties":457,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":461,"manageAffiliations":462,"indexDatabases":463,"url":20,"thumbnailPath":20,"statistic":470,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":458,"title":459,"eissn":460},{"VOID":13},{"EN":15},{"VOID":17},[],[],[464],{"id":26,"indexDatabase":465,"url":37,"indexYears":38,"academicFieldIds":20,"indexDatabaseRanking":39},{"id":28,"createTime":20,"updateTime":20,"relativeEntities":466,"label":467,"description":468,"key":34,"publicationTags":469,"standard":20},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":21,"impactFactorByYear":471,"i10Index":42,"i10IndexLast5Year":21,"totalPublication":43,"totalPublicationByYear":472,"totalCitation":47,"totalCitationByYear":473,"totalCitationPerPublication":51,"totalCitationPerPublicationByYear":474,"hindexLast5Year":42,"hindex":42},{},{"1996":45,"1997":46},{"1996":49,"1997":50},{"1996":53,"1997":54},{"total":21,"publishYear":476,"statisticByYear":477},1995,{},"1995-12-01","ERROR_IN_ANALYZE_CITATION","2026-08-19T16:21:42.926+00:00",[39],[483,487,491,494,498,502,505,509,513,517,521,524,528,532,535,538],{"id":20,"text":484,"url":20,"identifiers":485},"Hansen, P.G., Jonson, B.: Europhys. Lett. 4, 409 (1987)",{"doi":486},"10.1209\u002F0295-5075\u002F4\u002F4\u002F005",{"id":20,"text":488,"url":20,"identifiers":489},"Bertsch, G.F., Esbensen, H.: Ann. of Phys. 209, 327 (1991)",{"doi":490},"10.1016\u002F0003-4916(91)90033-5",{"id":20,"text":492,"url":20,"identifiers":493},"The contributions of Ikeda, K., Esbensen, H., Lenske, H., Kamimura, M., Sakuragi, Y. to Proc. of Int. Symposium on Structure and Reactions of Unstable Nuclei, Eds. K. Ikeda, Y. Suzuki, World Scientific (1991)",{},{"id":20,"text":495,"url":20,"identifiers":496},"Sagawa, H.: Nucl. Phys. A538, 619C (1992)",{"doi":497},"10.1016\u002F0375-9474(92)90810-7",{"id":20,"text":499,"url":20,"identifiers":500},"Fayans, S.A.: Phys. Lett. B267, 443 (1991)",{"doi":501},"10.1016\u002F0370-2693(91)90891-S",{"id":20,"text":503,"url":20,"identifiers":504},"Shimoura, T.: Proc. of Int. Symp. on Structure and Reactions of Unstable Nuclei Eds. K. Ikeda, Y. Suzuki, p. 132, World Scientific, 1991",{},{"id":20,"text":506,"url":20,"identifiers":507},"Ieki, K., Sackett, D., Galonsky, A., Bertulani, C.A., Kruse, J.J., Lynch, W.G., Morrissey, D.J., Orr, N.A., Schulz, H., Sustich, A., Wigner, J.A., Deak, F., Horvath, A., Kiss, A., Seres, Z., Kolata, J.J., Wigner, A.E., Humphrey, D.L.: Phys. Rev. Lett. 70, 6 (1993)",{"doi":508},"10.1103\u002FPhysRevLett.70.730",{"id":20,"text":510,"url":20,"identifiers":511},"Nakamura, T., et al.: Phys. Lett. B331, 296 (1994)",{"doi":512},"10.1016\u002F0370-2693(94)91055-3",{"id":20,"text":514,"url":20,"identifiers":515},"Sagawa, H., Takigawa, N., Van Giai, N.: Nucl. Phys. A543. 575 (1992)",{"doi":516},"10.1016\u002F0375-9474(92)90280-W",{"id":20,"text":518,"url":20,"identifiers":519},"Alhassid, Y., Gai, M., Bertsch, G.F.: Phys. Rev. Lett. 49, 1482 (1982)",{"doi":520},"10.1103\u002FPhysRevLett.49.1482",{"id":20,"text":522,"url":20,"identifiers":523},"Blatt, J.M., Weisskopf, V.F.: Theoretical Nuclear Physics, New York: John Wiley and Sons 1952",{},{"id":20,"text":525,"url":20,"identifiers":526},"Takigawa, N., Sagawa, H.: Phys. Lett. B265, 23 (1991)",{"doi":527},"10.1016\u002F0370-2693(91)90007-D",{"id":20,"text":529,"url":20,"identifiers":530},"Takigawa, N., Sagawa, H., Shinozuka, T.: Nucl. Phys. A538, 221c (1992)",{"doi":531},"10.1016\u002F0375-9474(92)90773-D",{"id":20,"text":533,"url":20,"identifiers":534},"Morimatsu, O.: Ph.D. thesis (Univ. of Tokyo, 1986) and Private communication",{},{"id":20,"text":536,"url":20,"identifiers":537},"Akaishi, Y.: Nucl. Phys. A527, 481c (1991)",{},{"id":20,"text":539,"url":20,"identifiers":540},"Sagawa, H.: Perspectives in Heavy Ion Physics, Eds. M. Di Toro, E. Migneco, p. 73, Bologna, Italian Physical Society (1993)",{},{"id":542,"createTime":543,"updateTime":544,"relativeEntities":545,"slug":546,"properties":547,"entityType":75,"verifyStatus":76,"verifyTime":558,"verifyNote":78,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":559,"fullTextUrl":20,"authors":560,"publicationType":251,"publisherRelationship":585,"citationCount":21,"citationInfo":611,"publishDate":614,"publishYear":612,"citationAnalyzeStatus":479,"lastCitationAnalyze":615,"indexDatabases":616,"openAccess":20,"references":20,"isForceReanalyzing":281},"7baf6c6b-5683-4b1b-8136-4bbd6769c6a5","2024-01-21T02:58:04.873+00:00","2026-08-18T12:25:43.523+00:00",[],"Description-of-the-nuclear-surface-by-moments",{"abstract":548,"title":550,"gsPaper":552,"references":554,"doi":556},{"EN":549},"The parameters proposed by W. D. Myers to describe the radial shape dependence of the nuclear surface are shown to be as useful as they are natural. For spherical nuclei, the central radiusC, the charge radiusR, the quadratic radiusQ are redefined, and it is shown how they are interrelated by Myers' surface widthb, flair γ3, crookedness γ4, and the higher shape parameter γ5. All these quantities are calculated for some special charge distribution functions. (For symmetric distributions, possessing a symmetry center atC, the odd surface momentsb\n3γ3 andb\n5γ5 vanish.) The connection of the surface moments Гμ =b\nμ\nγ\nμ with the volume momentsF\n\n                  k\n                 that have been extracted by K. W. Ford and J. G. Wills from muonic atoms, is indicated.",{"EN":551},"Description of the nuclear surface by moments",{"VOID":553},"[\"15131950865490020305\"]",{"VOID":555},"Hahn, B., Ravenhall, D. G., Hofstadter, R.: Phys. Rev.101, 1131 (1956)\nMyers, W. D.: Private communication (1967)\nMyers, W. D.: Nucl. Phys. A104, 465 (1973)\nMyers, W. D.: Nucl. Phys. A145, 387 (1970)\nMyers, W. D., Swiatecki, W. J.: Ann. of Phys.55, 395 (1969)\nChin-Fu Tsang: Ph.D. Thesis, Lawrence Radiation Laboratory Report UCRL-18899 (1969)\nCollard, H. R., Elton, L. R. B., Hofstadter, R.: Handb. Phys. I\u002F2, Berlin-Heidelberg-New York: Springer 1967\nElton, L. R. B.: Nucl. Phys.5, 173 (1958);8, 396 (1958)\nElton, L. R. B.: Nucl. Sizes. London: Oxford University Press 1961\nFord, K. W., Wills, J. G.: Phys. Rev.185, 1429 (1969)\nAbramowitz, M., Stegun, F. A.: Handbook of Mathematical Functions (National Bureau of Standards 1964, Dover 1965)",{"VOID":557},"10.1007\u002FBF01408467","2024-06-24T08:48:18.005+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01408467",[561],{"id":562,"sortIndex":21,"researcher":20,"roles":563,"affiliations":564,"properties":582,"displayName":584,"givenName":20,"familyName":20},"cf41641f-ca93-4c75-8030-af59353244b2",[86],[565,573],{"id":566,"sortIndex":21,"affiliation":567,"properties":20},"b18dacd1-1b75-4313-a02d-055aaac88cdc",{"id":566,"createTime":20,"updateTime":20,"relativeEntities":568,"slug":20,"properties":569,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":572,"statistic":20},[],{"title":570},{"EN":571},"[Lawrence Berkeley Laboratory, University of California, Berkeley, USA]",[],{"id":574,"sortIndex":101,"affiliation":575,"properties":581},"c41e7efe-73fb-4f65-b20d-4e8958bd5936",{"id":574,"createTime":20,"updateTime":20,"relativeEntities":576,"slug":20,"properties":577,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":580,"statistic":20},[],{"title":578},{"VI":579},"Sektion Physik der Universität München, Garching, Germany",[],{},{"title":583},{"VI":584},"Georg Süssmann",{"url":559,"publisher":586,"properties":606},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":587,"slug":10,"properties":588,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":592,"manageAffiliations":593,"indexDatabases":594,"url":20,"thumbnailPath":20,"statistic":601,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":589,"title":590,"eissn":591},{"VOID":13},{"EN":15},{"VOID":17},[],[],[595],{"id":26,"indexDatabase":596,"url":37,"indexYears":38,"academicFieldIds":20,"indexDatabaseRanking":39},{"id":28,"createTime":20,"updateTime":20,"relativeEntities":597,"label":598,"description":599,"key":34,"publicationTags":600,"standard":20},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":21,"impactFactorByYear":602,"i10Index":42,"i10IndexLast5Year":21,"totalPublication":43,"totalPublicationByYear":603,"totalCitation":47,"totalCitationByYear":604,"totalCitationPerPublication":51,"totalCitationPerPublicationByYear":605,"hindexLast5Year":42,"hindex":42},{},{"1996":45,"1997":46},{"1996":49,"1997":50},{"1996":53,"1997":54},{"pages":607,"volume":609},{"VOID":608},"145-159",{"VOID":610},"274",{"total":21,"publishYear":612,"statisticByYear":613},1975,{},"1975-06-01","2026-08-18T12:25:43.522+00:00",[39],{"id":618,"createTime":619,"updateTime":620,"relativeEntities":621,"slug":622,"properties":623,"entityType":75,"verifyStatus":76,"verifyTime":634,"verifyNote":78,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":635,"fullTextUrl":20,"authors":636,"publicationType":251,"publisherRelationship":665,"citationCount":691,"citationInfo":692,"publishDate":695,"publishYear":693,"citationAnalyzeStatus":479,"lastCitationAnalyze":620,"indexDatabases":696,"openAccess":20,"references":20,"isForceReanalyzing":281},"623b8d1a-868d-46d7-8104-3ccfc9188df0","2024-01-12T16:12:41.472+00:00","2026-08-17T13:07:07.632+00:00",[],"Splitting-of-the-isoscalarE0-andE2-giant-multipole-resonances-in16O",{"abstract":624,"title":626,"gsPaper":628,"references":630,"doi":632},{"EN":625},"The recently observed distribution of the transition strength of the isoscalar Giant Quadrupole Resonances can be explained by the admixture of (2p 2h)-excitations to the conventional (1p 1h)-configurations. The calculations agree nicely with (α, α′) and (e, e′) experiments. Due to the same mechanisme the Giant Monopole Strength is expected to be spread between 20 MeV and 40 MeV which makes it probably very difficult to detect such resonances experimentally.",{"EN":627},"Splitting of the isoscalarE0 andE2 giant multipole resonances in16O",{"VOID":629},"[\"3942154747708667273\"]",{"VOID":631},"Moss, J.M., Rozza, C.M., Youngblood, D.H., Bronson, J.D., Bacher, A.D.: Phys. Rev. Lett.34, 748 (1975)\nKnöpfle, K.T., Wagner, G.J., Breuer, H., Rogge, M., Mayer-Böricke, C.: Phys. Rev. Lett.35, 779 (1975)\nDeVoigt, M.J.A., Arends, A., Harakeh, M.N., Dentje, A.G., van de Werf, S.Y., van der Wonde, A.: Proc. Int. Conf. on Highly Excited States in Nuclei, ed. A. Faessler, C. Mayer-Böricke, P. Turek. Jülich 1975\nKrewald, S., Birkholz, J., Faessler, A., Speth, J.: Phys. Rev. Lett.33, 1386 (1974)\nFlocard, H., Vautherin, D.: Phys. Lett.55B, 259 (1975)\nBertsch, G.F., Tsai, S.F.: to be published\nHanna, S.S.: Proc. Int. Conf. on Nuclear Structure and Spectroscopy, Vol. II, ed. by H.P. Block and A.E. Diepering. Amsterdam 1974\nPhilipott, R.J., Szydlite, P.R.: Phys. Rev.153, 1039 (1967)\nEisenberg, J.M., Spicer, B.M., Rose, M.E.: Nucl. Phys.71, 273 (1965)\nSeaborn, J.B., Eisenberg, J.M.: Nucl. Phys.82, 308 (1966)\nBrown, G.E., Green, A.M.: Nucl. Phys.75, 401 (1966)\nKnüpfer, W.: Thesis 1972, Erlangen Grecksch, E., Knüpfer, W., Huber, M.G.: Lett. Nuovo Cim., in press\nGillet, V., Vinh Mau, N.: Nucl. Phys.54, 321 (1964)\nKnüpfer, W., Huber, M.G.: to be published\nYolly, H.P., jr.: Phys. Lett.5, 289 (1963)\nHotta, A., Itoh, K., Saito, T.: Phys. Rev. Lett.33, 790 (1974)\nKnüpfer, W., Huber, M.G.: preprint, submitted to Phys. Rev. C",{"VOID":633},"10.1007\u002FBF01437703","2024-05-16T07:00:53.401+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01437703",[637,652],{"id":638,"sortIndex":21,"researcher":20,"roles":639,"affiliations":640,"properties":649,"displayName":651,"givenName":20,"familyName":20},"33d2f4ec-f026-4003-b1db-b7dcf1795512",[86],[641],{"id":642,"sortIndex":21,"affiliation":643,"properties":20},"6929474a-a5d8-48ec-8bda-b7cc05d33cc8",{"id":642,"createTime":20,"updateTime":20,"relativeEntities":644,"slug":20,"properties":645,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":648,"statistic":20},[],{"title":646},{"VI":647},"Institut für Theoretische Physik, Universität Erlangen-Nürnberg, Erlangen, W.-Germany",[],{"title":650},{"VI":651},"W. Knüpfer",{"id":653,"sortIndex":101,"researcher":20,"roles":654,"affiliations":655,"properties":662,"displayName":664,"givenName":20,"familyName":20},"d359adbf-28dd-437f-acfe-84375e09b80c",[86],[656],{"id":642,"sortIndex":21,"affiliation":657,"properties":20},{"id":642,"createTime":20,"updateTime":20,"relativeEntities":658,"slug":20,"properties":659,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":661,"statistic":20},[],{"title":660},{"VI":647},[],{"title":663},{"VI":664},"M. G. Huber",{"url":635,"publisher":666,"properties":686},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":667,"slug":10,"properties":668,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":672,"manageAffiliations":673,"indexDatabases":674,"url":20,"thumbnailPath":20,"statistic":681,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":669,"title":670,"eissn":671},{"VOID":13},{"EN":15},{"VOID":17},[],[],[675],{"id":26,"indexDatabase":676,"url":37,"indexYears":38,"academicFieldIds":20,"indexDatabaseRanking":39},{"id":28,"createTime":20,"updateTime":20,"relativeEntities":677,"label":678,"description":679,"key":34,"publicationTags":680,"standard":20},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":21,"impactFactorByYear":682,"i10Index":42,"i10IndexLast5Year":21,"totalPublication":43,"totalPublicationByYear":683,"totalCitation":47,"totalCitationByYear":684,"totalCitationPerPublication":51,"totalCitationPerPublicationByYear":685,"hindexLast5Year":42,"hindex":42},{},{"1996":45,"1997":46},{"1996":49,"1997":50},{"1996":53,"1997":54},{"pages":687,"volume":689},{"VOID":688},"99-102",{"VOID":690},"276",38,{"total":691,"publishYear":693,"statisticByYear":694},1976,{},"1976-06-01",[39],{"id":698,"createTime":699,"updateTime":700,"relativeEntities":701,"slug":702,"properties":703,"entityType":75,"verifyStatus":76,"verifyTime":714,"verifyNote":78,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":715,"fullTextUrl":20,"authors":716,"publicationType":251,"publisherRelationship":747,"citationCount":20,"citationInfo":20,"publishDate":773,"publishYear":774,"citationAnalyzeStatus":775,"lastCitationAnalyze":776,"indexDatabases":777,"openAccess":20,"references":20,"isForceReanalyzing":281},"2db45aad-3278-4f0b-8172-0d8699c0ec3e","2024-02-12T23:56:01.953+00:00","2026-08-14T11:20:22.516+00:00",[],"Interactions-of12C-ions-with-emulsion-nuclei-at-momentum-4-2-GeV-c-per-nucleon-and-the-cascading-evaporation-model",{"abstract":704,"title":706,"gsPaper":708,"references":710,"doi":712},{"EN":705},"The general characteristics of inelastic interactions induced by12C relativistic nuclei, accelerated by the JINR Synchrophasotron in Dubna, were studied. Multiplicity and angular distributions of charged secondaries were analyzed. The average multiplicities, per incident nucleon, are consistent with those ofp, d andα particle primaries at the same energy per nucleon. The angular distributions of the target fragments (black and grey tracks) are very weakly dependent on the mass number of the incident nucleus. In 90% of12C inelastic interactions, fragmentations of the projectile nucleus, were observed. The cascading-evaporation model is extended to describe the inelastic interaction of two nuclei at high energies. The experimental data of12C-emulsion interactions at 4.2 GeV\u002Fc per nucleon were systematically compared with the predictions of the model. A good agreement of the model predictions with the experiment is demonstrated.",{"EN":707},"Interactions of12C ions with emulsion nuclei at momentum 4.2 GeV\u002Fc per nucleon and the cascading-evaporation model",{"VOID":709},"[]",{"VOID":711},"Feinberg, E.L.: Problems of theoretical physics, a memorial volume to Igor Tamm, pp. 248, Moscow: Nauka 1972\nGottfried, K.: CERN Preprint, TH 1735 (1972)\nOtterlund, I.: High energy hadron reactions on nuclei and high energy heavy ion rections. Talks given at the symposium on high energy reactions. Cairo University, Egypt. 25 Nov.–10 Dec. 1979\nBodmer, A.R.: Phys. Rev. D4, 1601 (1971)\nLee T.D., Wick, G.C.: Phys. Rev. D9, 2291 (1974)\nNyman, E.M., Rho, M.: Nucl. Phys. A268, 408 (1976)\nIrvine, J.M.: Rep. Prog. Phys.38, 1385 (1975)\nHofmann, J., Stocker, H., Heinz, U., Scheid, W., Greiner, W.: Phys. Rev. Lett.36, 88 (1976)\nGudima, K.K., Toneev, V.D.: Preprint JINR, E 4-9765, Dubna 1976\nGudima, K.K., Toneev, V.D.: Preprint JINR, P2-10431, Dubna (1977)\nBaumgart, H.G., Schott, J.U., Sakamoto, Y., Schopper, E., Stocker, H., Hofmann, J., Scheid, W., Greiner, W.: Z. Physik A237, 359 (1975)\nBaumgrat, H.G., Schopper, E., Schott, J.U., Kocherov, N.P., Voromov, A.V., Issinsky, I.D., Makarov, L.G.: Proceedings of the International Workshop on Gross properties of Nuclei and Nuclear Excitations IV, Kleinwalzertal, Austria (1976)\nScheid, W., Muller, H., Greiner, W.: Phys. Rev. Lett.32, 741 (1974)\nSobel, M.I., Simens, P.J., Bondorf, I.P., Bethe, H.A.: Nucl. Phys., A251, 502 (1975)\nPrivate Communication with Prof. K.D.Tolostov\nBVDKLMT Collaboration: Preprint JINR, P1-6877, Dubna (1972)\nBVDKLMT Collaboration: Preprint JINR, P1-8313, Dubna (1974)\nAdamovich, M.I. et al.: Preprint JINR, E1-10838, Dubna (1977)\nBradt, H.L., Peters, B.: Phys. Rev.77, 54 (1950)",{"VOID":713},"10.1007\u002FBF01416028","2024-09-05T00:12:26.697+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01416028",[717,732],{"id":718,"sortIndex":21,"researcher":20,"roles":719,"affiliations":720,"properties":729,"displayName":731,"givenName":20,"familyName":20},"54556f63-c8d7-4925-b2a5-0c9d58294127",[86],[721],{"id":722,"sortIndex":21,"affiliation":723,"properties":20},"bc077bda-9007-4f7a-81fe-53dd36ad4e99",{"id":722,"createTime":20,"updateTime":20,"relativeEntities":724,"slug":20,"properties":725,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":728,"statistic":20},[],{"title":726},{"VI":727},"Physics Department, Faculty of Science, Cairo University, Cairo, Egypt",[],{"title":730},{"VI":731},"A. 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Toneev",{"url":715,"publisher":748,"properties":768},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":749,"slug":10,"properties":750,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":754,"manageAffiliations":755,"indexDatabases":756,"url":20,"thumbnailPath":20,"statistic":763,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":751,"title":752,"eissn":753},{"VOID":13},{"EN":15},{"VOID":17},[],[],[757],{"id":26,"indexDatabase":758,"url":37,"indexYears":38,"academicFieldIds":20,"indexDatabaseRanking":39},{"id":28,"createTime":20,"updateTime":20,"relativeEntities":759,"label":760,"description":761,"key":34,"publicationTags":762,"standard":20},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":21,"impactFactorByYear":764,"i10Index":42,"i10IndexLast5Year":21,"totalPublication":43,"totalPublicationByYear":765,"totalCitation":47,"totalCitationByYear":766,"totalCitationPerPublication":51,"totalCitationPerPublicationByYear":767,"hindexLast5Year":42,"hindex":42},{},{"1996":45,"1997":46},{"1996":49,"1997":50},{"1996":53,"1997":54},{"pages":769,"volume":771},{"VOID":770},"55-59",{"VOID":772},"298","1980-03-01",1980,"ERROR_IN_GET_PLATFORM_ID","2026-08-14T11:20:22.515+00:00",[],{"id":779,"createTime":780,"updateTime":781,"relativeEntities":782,"slug":783,"properties":784,"entityType":75,"verifyStatus":76,"verifyTime":795,"verifyNote":78,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":796,"fullTextUrl":20,"authors":797,"publicationType":251,"publisherRelationship":920,"citationCount":143,"citationInfo":946,"publishDate":949,"publishYear":947,"citationAnalyzeStatus":479,"lastCitationAnalyze":950,"indexDatabases":951,"openAccess":20,"references":20,"isForceReanalyzing":281},"70221065-e6f4-43a9-80e2-4bec93808655","2023-12-13T13:19:46.211+00:00","2026-08-14T08:20:32.800+00:00",[],"104-MeV-alpha-particle-scattering-from90-92Zr",{"abstract":785,"title":787,"gsPaper":789,"references":791,"doi":793},{"EN":786},"Differential cross sections have been measured for the elastic and inelastic scattering of 104 MeV alpha-particles from90, 92Zr. The experimental data are analyzed in terms of coupled channels on the basis of a flexible anharmonic vibrator model and using different parametrizations of the radial shape of the extended optical potential. The results favour the squared Saxon-Woods type for the real part. Additionally to a radial momentum analysis of the real potentials a semimicroscopic folding model has been applied for extracting isoscalar quadrupole and hexadecapole transition rates.",{"EN":788},"104 MeV alpha particle scattering from90, 92Zr",{"VOID":790},"[\"14037403755893931902\"]",{"VOID":792},"Proc. 2nd Louvain-Cracow Seminar: The Alpha-Nucleus Interaction. Gregoire, G., Grotowski, K., (eds.). Université de Louvain, Belgium, June 5–7, 1978\nGoldberg, D.A.: Proc. 2nd Louvain-Cracow Seminar: The Alpha-Nucleus Interaction. Gregoire, G., Grotowski, K., (eds.). Université de Louvain, Belgium, June 5–7, 1978 p.41\nGils, H.J.: In: What do We Know about Radial Shape of Nuclei in the Ca-Region? Proc. Int. Discussion Meeting, Karlsruhe, May 2–4, 1979, Rebel, H., Gils, HJ., Schatz, G. (eds.). KfK 2830 (1979)\nMajka, Z., Gils, H.J., Rebel, H.: Z. Phys. A — Atoms and Nuclei288, 139 (1978)\nVinh Mau, N.: Phys. Lett.71 B, 5 (1977)\nFriedman, E., Batty, C.J.: Phys. Rev. C17, 34 (1978)\nBrissaud, I., Brussel, M.K.: J. Phys.63, 481 (1977)\nRoberson, P.L.: Phys. Rev. C22, 482 (1980)\nPut, L.W., Paans, A.M.J.: Nucl. Phys. A291, 93 (1977)\nBudzanowski, A., Grotowski, K., Grzywacz, M., Strzalkowski, A.: Prog. Report. Inst. of Nucl. Phys. Cracow, 1972 (unpublished)\nGoldberg, D.A.: Phys. Lett.55 B, 59 (1975)\nMajka, Z., Srokowski, T.: Acta Phys. Polon. B9, 75 (1978)\nRebel, H.: Z. Phys. — Atoms and Nuclei277, 35 (1976)\nCowley, A.A., Wall, N.S.: Phys. Rev. C17, 1322 (1978)\nTamura, T.: Prog. Theor. Phys. Suppl.37 and38, 383 (1966)\nRebel, H., Löhken, R., Schweimer, G.W., Schatz, G., Hauser, G.: Z. Phys.256, 258 (1972)\nRebel, H., Gils, H.J., Knüpfer, W.: In: Proc. XVI Int. Winter Meeting on Nuclear Physics, Bormio, Jan. 16–21, 1978, p. 532. Lori, J. (ed.), p. 532. Inst. Fisica University, Milano 1978\nFaust, H., Hanser, A., Klewe-Nebenius, H., Rebel, H., Buschmann, J., Gils, H.J.: J. Phys. G: Nucl. Phys.4, 247 (1978)\nGils, H.J., Friedman, E., Rebel, H., Buschmann, J., Zagromski, S., Klewe-Nebenius, H., Neumann, B., Pesl, R., Bechtold, G.: Phys. Rev. C21, 1239 (1980)\nFriedman, E., Gils, H.J., Rebel, H., Pesl, R.: KfK 3038 (1980)\nGils, H.J.: KfK 3063 (1980)\nBudzanowski, A., Dabrowski, H., Freindl, L., Grotowski, K., Micek, S., Planeta, R., Strzalkowski, A., Bosman, M., Leleux, P., Macq, P., Meulders, J.P., Pirat, C.: Phys. Rev. C17, 951 (1978)\nSchweimer, G.W., Raynal, J.: Private communication\nRebel, H., Schweimer, G.W.: Z. Phys.262, 59 (1973)\nRebel, H., Hauser, G., Schweimer, G.W., Nowicki, G., Wiesner, W., Hartmann, D.: Nucl. Phys. A218, 13 (1974)\nGils, H.J., Rebel, H., Buschmann, J., Klewe-Nebenius, H., Nowicki, G.P., Nowatzke, W.: Z. Phys. — Atoms and Nuclei249, 55 (1976)\nDe Jager, C.W., de Vries, H., de Vries, C.: At. Data Nucl. Data Tables14, 479 (1974)\nSatchler, G.R.: J. Math. Phys.13, 1118 (1972)\nMackintosh, R.S.: Nucl Phys. A266, 379 (1976)\nRebel, H., Pesl, R., Gils, H.J., Friedman, E.: Nucl. Phys. A368, 61 (1981)\nEndt, P.M.: At. Nucl. Data Tables23, 6, 547 (1979)\nMartens, E.J., Bernstein, A.M.: Nucl. Phys. A117, 24 (1968);\nMartens, E.J., Bernstein, A.M.: Phys. Lett.24 B, 669 (1967)\nMadsen, V.A., Brown, V.R., Anderson, J.O.: Phys. Rev. C12, 1205 (1975); Phys. Rev. Lett.34, 1398 (1975)\nBernstein, A.M., Brown, V.R., Madsen, V.A.: Phys. Lett.103 B, 255 (1981); Phys. Lett106 B, 259 (1981)\nSchmidt, M.R., Grabmayr, P., Wagner, G.G.: to be published",{"VOID":794},"10.1007\u002FBF01419085","2024-05-16T20:41:57.711+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF01419085",[798,822,835,848,861,874,894,907],{"id":799,"sortIndex":21,"researcher":20,"roles":800,"affiliations":801,"properties":819,"displayName":821,"givenName":20,"familyName":20},"f9504320-3de0-4585-a65c-414417097c49",[86],[802,810],{"id":803,"sortIndex":21,"affiliation":804,"properties":20},"ea5a6434-c6c6-4782-87ff-7f4fae86ec4e",{"id":803,"createTime":20,"updateTime":20,"relativeEntities":805,"slug":20,"properties":806,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":809,"statistic":20},[],{"title":807},{"VI":808},"Kernforschungszentrum Karlsruhe GmbH, Institut für Angewandte Kernphysik, Karlsruhe, Federal Republic of Germany",[],{"id":811,"sortIndex":101,"affiliation":812,"properties":818},"72c5a946-a15c-46dd-8107-3e0f049470e4",{"id":811,"createTime":20,"updateTime":20,"relativeEntities":813,"slug":20,"properties":814,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":817,"statistic":20},[],{"title":815},{"VI":816},"Institute for Physics and Nuclear Engineering, Bucharest, Romania",[],{},{"title":820},{"VI":821},"V. 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The model potential has only two free parameters which are determined by a best fit of the interatomic potentials to experimental results. Satisfactory agreement between calculated and experimental results is found for the differential cross sections in the groundstate and the excited state, for satellites in theK(4P),K(5P) and Na(3P) line profile, for the van der Waals constantsC\n(6) andC\n(8), the alkali ion-rare gas interaction and the vibrational energy levels of the Na-Ar molecule. As maior advantages we point out that for a given pair of atoms all these calculated data are given with one single pair of values for the free parameters and that with this set also the interatomic potentials for the higher alkali states (specifically up to 5f for Na and K) are obtained.",{"EN":962},"On the interaction of excited alkali atoms with rare gas targets in scattering processes",{"VOID":964},"[\"3701179037945889397\"]",{"VOID":966},"Buck, U., Pauly, H.: Z. Phys.208, 390 (1968)\nDüren, R., Raabe, G.P., Schlier, Ch.: Z. Phys.214, 410 (1968)\nBeck, D., Krämer, R.: (unpublished results, quoted from reference (2))\nBusch, F.v., Strunck, H.J., Schlier, Ch.: Z. Phys.199, 518 (1967)\nBennewith, H.G., Dohmann, H.D.: Z. Phys.182, 524 (1965)\nDüren, R., Gröger, W.: Chem. Phys. Lett.56, 67 (1978)\nGallagher, A.: At. Phys, Proc. Int. Conf., 4th, 559 (1975)\nBehmenburg, W.: Progress in atomic spectroscopy. Hanle, Kleinpoppen, H. (eds.), Part B, p. 1187 (1978)\nDüren, R., Hasselbrink, E., Milosević, S., Pichler, G., Tischer, H.: Chem. Phys. Lett. (in press)\nSmalley, R.E., Auerbach, D.A., Fitch, P.S.H., Levy, D.H., Wharton, L.: J. Chem. Phys.66, 3778 (1977)\nTellinghuisen, J., Ragone, A., Soo Kim Mying, Auerbach, D.A., Smalley, R.E., Wharton, L., Levy, D.H.: J. Chem. Phys.71, 1283 (1979)\nAhmad-Bitar, G.R., Lapatovich, W.P., Pritchard, D.E.: Phys. Rev. Lett.39, 1657 (1977)\nCarter, G., Pritchard, D.E., Kaplan, M., Ducas, T.: Phys. Rev. Lett.35, 1144 (1975)\nPhillips, W.D., Serri, J.A., Ely, D.J., Pritchard, D.E., Way, K.R., Kinsey, J.L.: Phys. Rev. Lett.41, 937 (1978)\nDüren, R., Gröger, W.: Chem. Phys. Lett.61, 6 (1979);\nDüren, R., Gröger, W., Hasselbrink, E., Liedtke, R.: J. Chem. Phys.74, 6806 (1981)\nDüren, R., Tischer, H.: Chem. Phys. Lett.79, 481 (1981)\nFischer, A., Hertel, I.V.: Z. Phys. A —Atoms and Nuclei304, 103 (1982)\nSaxon, R.P., Olson, R.E., Liu, B.: J. Chem. Phys.67, 2692 (1977)\nBaylis, W.E.: J. Chem. Phys.51, 2665 (1969)\nPascale, J., Vandeplanque, J.: J. Chem. Phys.60, 2778 (1974)\nPeach, G.: J. Phys. B11, 2107 (1978)\nPhilippe, M., Masnou-Seeuws, F., Valiron, P.: J. Phys. B12, 2493 (1979)\nDüren, R., Moritz, G.: J. Chem. Phys.73, 5155 (1980)\nDüren, R.: Adv. At. Mol. Phys.16, 55 (1980)\nGombás, P.: Pseudopotentiale. Berlin, Heidelberg, New York: Springer Verlag 1967\nBottcher, C., Dalgarno, A.: Proc. R. Soc. London A340, 187 (1974)\nFroese-Fischer, C.: Comp. Phys. Commun.4, 116 (1972)\nDalgarno, A., Kingston, A.E.: Proc. R. Soc. London Ser. A259, 424 (1961)\nBurns, G.: J. Chem. Phys.31, 1253 (1959)\nDoran, M.B.: J. Phys. B7, 558 (1974)\nDalgarno, A., Drake, G.W.F., Victor, G.A.: Phys. Rev.176, 194 (1968)\nMoore, C.E.: Natl. Bur. Stand. (U.S.) Circ. 467 (1949)\nReid, R.H.G.: J. Phys. B6, 2018 (1973)\nMies, F.H.: Phys. Rev. A7, 942 (1973)\nDüren, R., Moritz, G.: J. Chem. Phys.75, 6995 (1981)\nMilosevic, S., Pichler, G.: (to be published)\nSzudy, J., Baylis, W.E.: J. Quant. Spectrosc. Radiat. Transi.15, 641 (1975)\nSando, K.M., Wormhoudt, J.C.: Phys. Rev. A7, 1889 (1973)\nMason, E.A., Schamp, H.W., Jr.: Ann. Phys. (N.Y.),4, 233 (1958)\nSkullemd, H.R.: J. Phys. B6, 918 (1973)\nPowers, T.R., Cross, R.J. Jr.: J. Chem. Phys.58, 626 (1973)\nKim, Y.S., Gordon, R.G.: J. Chem. Phys.61, 1 (1974)\nDalgarno, A., Davison, W.D.: Adv. At. Mol. Phys.2, 1 (1967)\nTang, K.T., Norbeck, J.M., Certain, P.R.: J. Chem. Phys.64, 3063 (1976)\nWoerdmann, J.P., de Groot, J.J.: Private communication\nCzuchaj, E., Sienkiewicz, J.: Z. Naturforsch. A34, 694 (1979)\nChebanier de Guerra, A., Masnov-Seeuws, F.: J. Chem. Phys. (submitted for pubhblication)\nTang, K.T., Toennis, J.P.: J. Chem. Phys. G6, 1496 (1977)",{"VOID":968},"10.1007\u002FBF01416066","2024-08-31T06:55:06.485+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01416066",[972,987,1002],{"id":973,"sortIndex":21,"researcher":20,"roles":974,"affiliations":975,"properties":984,"displayName":986,"givenName":20,"familyName":20},"eb7e7e24-4608-49aa-96b3-6e0e7e663e97",[86],[976],{"id":977,"sortIndex":21,"affiliation":978,"properties":20},"3abd83f0-a817-4a91-86d7-331b6f9d3990",{"id":977,"createTime":20,"updateTime":20,"relativeEntities":979,"slug":20,"properties":980,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":983,"statistic":20},[],{"title":981},{"VI":982},"Max-Planck-Institut für Strömungsforschung, Göttingen, Federal Republic of Germany",[],{"title":985},{"VI":986},"R. 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Our resultE1= −8.4·10−12\niea\n0 for sin2\nθ\nw = 0.22 is in good agreement with the experimental value. We also give a general discussion of the consequences of a violation of discrete symmetries for the solutions of the Dirac equation.",{"EN":1058},"Hartree-Fock-calculation of parity-violation in cesium",{"VOID":1060},"[\"16125371039746085412\"]",{"VOID":1062},"For a review see in At. Phys.7 (1981) the articles of Bouchiat, C., Commins, E.D.: pp. 83 and 121\nFortson, E.N., Wilets, L.: Adv. At. Mol. Phys.16, 319 (1980)\nSome recent theoretical results for other atoms are Das, B.P., Andrienssen, J., Mina, Vajed-Samii, Ray, S.N., Das, T.P.: Phys. Rev. Lett.49, 32 (1982)\nHenley, E.M., Klapisch, M., Wilets, L.: Phys. Rev. Lett.39, 994 (1977)\nEmmons, T.P., Reeves, J.M., Fortson, E.N.: Phys. Rev. Lett.51, 2089 (1983)\nThe method we use is very similar to those described in: Sanders, P.G.H.: J. Phys. B10, 2983 (1977)\nMartensson, A.M.: Phys. Scr.21, 293 (1980)\nHeully, J.L., Martensson, A.M.: Phys. Scr.27, 291 (1983)\nMartensson, A.M., Henley, E.M., Wilets, L.: Phys. Rev. A24, 308 (1981)\nBouchiat, M.A., Guena, J., Hunter, L., Pottier, L.: Phys. Lett.117 B, 358 (1982); Phys. Lett.134B, 463 (1984)\nNocross, D.: Phys. Rev. A7, 606 (1973)\nLoving, C.E., Sandars, P.G.H.: J. Phys. B8, L336 (1975)\nNeuffer, D.V., Commins, E.D.: Phys. Rev. A16, 844 (1977)\nDas, B.P.: Dissertation work, university of New York at Albany (1981) (to be published)\nBouchiat, C., Piketty, C.A.: Phys. Lett.128B, 73 (1983)\nDzuba, V.A., Flambaum, V.V., Sushkov, O.P.: J. Phys. B16, 715 (1983)\nSee the articles of Bouchiat, C. in Refs. 1 and 3\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, P.P.: Phys. Lett.103 A, 265 (1984) Martensson-Pendrill, A.M.: 9th International Conference on Atomic Physics Seattle 1984 Johnson, W.R., Guo, D.S., Indrees, M., Sapirstein, J.: Notre Dame preprint\nWu, C.S., Ambler, E., Hayward, R.W., Hoppes, D.D., Hudson, R.P.: Phys. Rev.105, 1413 (1957)\nChristenson, J.H., Cronin, J.W., Fitch, V.L., Turlay, R.: Phys. Rev. Lett.137, 138 (1964)\nRose, E.M.: Relativistic Electron Theory. New York: Wiley & Sons Inc. 1961\nWheater, J.F.: Phys. Lett.105B, 483 (1981)\nEngfer, R., Schneuwly, H., Vuilleumier, J.L., Walter, H.K., Zehnder, A.: At. Data Nucl. Data Tables14, 509 (1974)\nJohnson, W.R., Lin, C.D.: Phys. Rev. A20, 964 (1979)",{"VOID":1064},"10.1007\u002FBF01415132","2024-05-13T10:18:13.802+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01415132",[1068,1083,1098],{"id":1069,"sortIndex":21,"researcher":20,"roles":1070,"affiliations":1071,"properties":1080,"displayName":1082,"givenName":20,"familyName":20},"addc409d-2f63-42e1-8d06-f8b561df2881",[86],[1072],{"id":1073,"sortIndex":21,"affiliation":1074,"properties":20},"c16d4110-f216-4697-b956-9eb4109287f9",{"id":1073,"createTime":20,"updateTime":20,"relativeEntities":1075,"slug":20,"properties":1076,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1079,"statistic":20},[],{"title":1077},{"VI":1078},"Institut für Theoretische Physik der J.W. Goethe-Universität, Frankfurt am Main, Germany",[],{"title":1081},{"VI":1082},"A. 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It is caused by rotational excitation mainly. Individual rotational transitions are not resolved. The quasi-continuous recoil velocity distributions extend between well defined bounds, the upper corresponding to elastic scattering, the lower marking a largest amount of energy transferred into molecular rotation at givenϑ andE. This maximal transfer increases with angle and — forE≳0.64 eV — in near proportion toE. At allϑ andE it is larger for CO than forN\n2, amounting to about 0.42E forN\n2 and 0.64E for CO atϑ=150°. At or very close to each of their bounds the distributions exhibit pronounced maxima. A third intermediate maximum is present for CO, but missing for N2. The scattering in these experiments is dominated by the repulsive core of the interaction potential. On the basis of classical scattering from a rigid, ellipsoidal, initially nonrotating potential shell, the observations can be qualitatively understood as follows: The recoil velocity dependence of the orientation averaged cross section at fixed observation angle will exhibit classical, integrable singularities at extremal amounts of rotational energy transfer. If the center of symmetry of the shell coincides with the center of mass of the molecule, there will be two such extremal transfers,ΔE=0 and a largest transfer possible at the chosen angle. If the centers do not coincide, the singularity at the largest transfer will split into two, one corresponding to the short, the other to the long “lever arm” of the shell. K + N2 is an example of the centrical, K+CO of the excentrical case. The finite energy losses, at which the singularities occur, are — at each angle — strongly dependent on the anisotropy and excentricity of the shell.","Cấu trúc được quan sát trong phân bố vận tốc phản hồi của các nguyên tử kali bị tán xạ không đàn hồi từ các phân tử N2 và CO tại các góc CMS ϑ>π\u002F2 và năng lượng va chạm 0.34≦E≦1.24 eV. Cấu trúc này chủ yếu được gây ra bởi sự kích thích quay. Các chuyển đổi quay riêng lẻ không được phân giải. Phân bố vận tốc phản hồi gần như liên tục mở rộng giữa các giới hạn rõ ràng, giới hạn trên tương ứng với tán xạ đàn hồi, giới hạn dưới đánh dấu một lượng năng lượng lớn nhất được chuyển vào sự quay của phân tử tại ϑ và E đã cho. Lượng chuyển tối đa này tăng theo góc và — với E≳0.64 eV — gần như tỷ lệ với E. Tại tất cả các ϑ và E, nó lớn hơn cho CO so với N2, đạt khoảng 0.42E cho N2 và 0.64E cho CO tại ϑ=150°. Tại hoặc rất gần với mỗi giới hạn của chúng, các phân bố xuất hiện các cực đại rõ ràng. Một cực đại trung gian thứ ba có mặt cho CO, nhưng vắng mặt cho N2. Hiện tượng tán xạ trong các thí nghiệm này bị chi phối bởi lõi đẩy của thế năng tương tác. Dựa trên thí nghiệm tán xạ cổ điển từ một lớp tiềm năng hình ellipsoid rắn, không quay ban đầu, các quan sát có thể được hiểu một cách định tính như sau: Sự phụ thuộc vận tốc phản hồi của tiết diện trung bình theo hướng tại góc quan sát cố định sẽ thể hiện các điểm kỳ dị cổ điển, có thể tích phân tại các lượng chuyển năng lượng quay cực trị. Nếu tâm đối xứng của lớp trùng với tâm khối của phân tử, sẽ có hai lượng chuyển cực trị như vậy, ΔE=0 và một lượng chuyển lớn nhất có thể tại góc đã chọn. Nếu các tâm không trùng khớp, điểm kỳ dị tại lượng chuyển lớn nhất sẽ chia thành hai, một tương ứng với “đòn bẩy” ngắn, một tương ứng với “đòn bẩy” dài của lớp. K + N2 là một ví dụ của trường hợp trung tâm, K + CO của trường hợp lệch tâm. Các mất mát năng lượng hữu hạn, tại đó các điểm kỳ dị xảy ra, là — tại mỗi góc — phụ thuộc mạnh vào độ dị hướng và độ lệch tâm của lớp.",{"EN":1154,"VI":1155},"Anisotropy of the repulsive intermolecular potential from rotationally inelastic scattering","Độ dị hướng của thế năng tương tác giữa các phân tử từ hiện tượng tán xạ không đàn hồi quay",{"VOID":1157},"[\"8685857775887113057\"]",{"VI":1159},"tán xạ không đàn hồi, phân bố vận tốc phản hồi, thế năng tương tác, khí N2, CO, kích thích quay",{"VOID":1161},"10.1007\u002FBF01408107","2024-04-29T20:56:28.625+00:00",[80],"https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01408107",[1166,1181,1194],{"id":1167,"sortIndex":21,"researcher":20,"roles":1168,"affiliations":1169,"properties":1178,"displayName":1180,"givenName":20,"familyName":20},"4864e13e-e5db-469f-9a29-28a50e84d45a",[86],[1170],{"id":1171,"sortIndex":21,"affiliation":1172,"properties":20},"a70e8e69-84ef-44e6-afca-323cafe56d9e",{"id":1171,"createTime":20,"updateTime":20,"relativeEntities":1173,"slug":20,"properties":1174,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1177,"statistic":20},[],{"title":1175},{"VI":1176},"Fakultät für Physik, Universität, Bielefeld, Federal Republic of Germany",[],{"title":1179},{"VI":1180},"W. 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Rev. Phys. Chem.24, 379 (1973)",{},{"id":20,"text":1246,"url":20,"identifiers":1247},"Faubel, M., Toennies, J.P.: Adv. Atom. Mol. Phys.13, 229 (1977)",{},{"id":20,"text":1249,"url":20,"identifiers":1250},"Systems H++H2, HD, D2: Moore, J.H., Doering, J.P.: Phys. Rev. Lett.23, 564 (1969)",{},{"id":20,"text":1252,"url":20,"identifiers":1253},"Systems H++H2, HD, D2: Herrero, F.A., Doering, J.P.: Phys. Rev. A5, 702 (1972)",{},{"id":20,"text":1255,"url":20,"identifiers":1256},"Systems H++H2, HD, D2: Udseth, H., Giese, C.F., Gentry, W.R.: Phys. Rev. A8, 2483 (1973)",{},{"id":20,"text":1258,"url":20,"identifiers":1259},"Systems H++H2, HD, D2: Rudolph, K., Toennies, J.P.: J. Chem. Phys.65, 4483 (1976)",{},{"id":20,"text":1261,"url":20,"identifiers":1262},"Systems H++H2, HD, D2: Schmidt, H., Hermann, V., Linder, F.: Chem. Phys. Lett.41, 365 (1976)",{},{"id":20,"text":1264,"url":20,"identifiers":1265},"Systems Li+ + N2, CO, CO2, N2O: Böttner, R., Ross, U., Toennies, J.P.: J. Chem. Phys.65, 733 (1976)",{},{"id":20,"text":1267,"url":20,"identifiers":1268},"Systems Li+ + N2, CO, CO2, N2O: Eastes, W., Ross, U., Toennies, J.P.: J. Chem. Phys.66, 1919 (1977)",{},{"id":20,"text":1270,"url":20,"identifiers":1271},"Buck, U., Huisken, F., Schleusener, J., Pauly, H.: Phys. Rev. Lett.38, 680 (1977)",{},{"id":20,"text":1273,"url":20,"identifiers":1274},"Buck, U., Huisken, F., Schleusener, J.: J. Chem. Phys.68, 5654 (1978)",{},{"id":20,"text":1276,"url":20,"identifiers":1277},"Gentry, W.R., Giese, C.F.: J. Chem. Phys.67, 5389 (1977)",{},{"id":20,"text":1279,"url":20,"identifiers":1280},"Gentry, W.R., Giese, C.F.: Phys. Rev. Lett.39, 1259 (1977)",{},{"id":20,"text":1282,"url":20,"identifiers":1283},"Giese, C.F., Gentry, W.R.: Phys. Rev. A10, 2156 (1974)",{},{"id":20,"text":1285,"url":20,"identifiers":1286},"Loesch, H.J.: Chem. Phys.18, 431 (1976)",{},{"id":20,"text":1288,"url":20,"identifiers":1289},"Figures in parantheses denote the ± error of the last given decimal place",{},{"id":20,"text":1291,"url":20,"identifiers":1292},"Gallagher, R.J., Fenn, J.B.: Proc. IX. Symp. Raref. Gas Dyn., Göttingen, 1974",{},{"id":20,"text":1294,"url":20,"identifiers":1295},"Buck, U., Pauly, H., Pust, D., Schleusener, J.: Ibid. Brusdeylins, G., private communication",{},{"id":20,"text":1297,"url":20,"identifiers":1298},"Pühl, F., Schepper, W., Beck, D.: Verh. d. Deutschen Phys. Gesellschaft 2\u002F77, Abstract A 124, and: Proc. X. ICPEAC, Paris, Vol. 2, p. 760. At the time the more inelastic maximum in K + CO scattering was the only resolved structure, seen in a small energy range. It was assumed to be caused by vibrational excitation of CO",{},{"id":20,"text":1300,"url":20,"identifiers":1301},"Martin, P.J., Clemens, E., Zehnle, L., Kempter, V.: Z. Physik A (1979)",{},{"id":20,"text":1303,"url":20,"identifiers":1304},"LaBudde, R.A., Bernstein, R.B.: J. Chem. Phys.55, 5499 (1971)",{},{"id":20,"text":1306,"url":20,"identifiers":1307},"Dimpfl, W.L., Mahan, B.H.: J. Chem. Phys.60, 3238 (1974)",{},{"id":20,"text":1309,"url":20,"identifiers":1310},"Kolb, C.E., Elgin, J.B.: J. Chem. Phys.66, 119 (1977) and other sources cited therein",{},{"id":20,"text":1312,"url":20,"identifiers":1313},"A correspondence of the anisotropy and the nuclear geometry of the involved molecule has repeatedly been noted before; e.g. in Ref. 7",{},{"id":20,"text":1315,"url":20,"identifiers":1316},"Malerich, C.J., Provodator, K.B., Cross, R.J.: J. Chem. Phys.20, 409 (1977)",{},{"id":20,"text":1318,"url":20,"identifiers":1319},"Eastes, W., Ross, U., Toennies, J.P.: Chem. Phys.",{},{"id":20,"text":1321,"url":20,"identifiers":1322},"Barg, G.D., Diplomarbeit, Göttingen, 1973; Ref. 7",{},{"id":20,"text":1324,"url":20,"identifiers":1325},"Preston, R.K., Pack, R.T.: J. Chem. Phys.66, 2480 (1977)",{},{"id":20,"text":1327,"url":20,"identifiers":1328},"Billing, G.D.: Chem. Phys.",{},{"id":20,"text":1330,"url":20,"identifiers":1331},"Thomas, L.D.: J. Chem. Phys.67, 5224 (1977)",{}]