Whispering gallery modes in a spherical microcavity with a photoluminescent shell

Semiconductors - Tập 49 - Trang 1369-1374 - 2015
S. A. Grudinkin1,2, A. A. Dontsov1, N. A. Feoktistov3,2, M. A. Baranov2, K. V. Bogdanov2, N. S. Averkiev1, V. G. Golubev1
1Ioffe Physical-Technical Institute, Russian Academy of Sciences, St. Petersburg, Russia
2ITMO University, St. Petersburg, Russia
3Ioffe Physical Technical Institute, Russian Academy of Sciences, St. Petersburg, Russia

Tóm tắt

Whispering-gallery mode spectra in optical microcavities based on spherical silica particles coated with a thin photoluminescent shell of hydrogenated amorphous silicon carbide are studied. The spectral positions of the whispering-gallery modes for spherical microcavities with a shell are calculated. The dependence of the spectral distance between the TE and TM modes on the shell thickness is examined.

Tài liệu tham khảo

J. Ward and O. Benson, Laser Photon. Rev. 5, 553 (2011). F. Vollmer and L. Yang, Nanophotonics 1, 267 (2012). Y. P. Rakovich and J. F. Donegan, Laser Photon. Rev. 4, 179 (2010). S. Soria, S. Berneschi, L. Lunelli, G. N. Conti, L. Pasquardini, C. Pederzolli, and G. Righini, Adv. Sci. Technol. 82, 55 (2013). F. Vollmer and S. Arnold, Nature Methods 5, 591 (2008). L. Pasquardini, S. Berneschi, A. Barucci, F. Cosi, R. Dallapiccola, M. Insinna, L. Lunelli, G. N. Conti, C. Pederzolli, S. Salvadori, and S. Soria, J. Biophoton. 6, 178 (2013). I. Teraoka and S. Arnold, J. Opt. Soc. Am. B 23, 1381 (2006). A. Weller, F. C. Liu, R. Dahint, and M. Himmelhaus, Appl. Phys. B 90, 561 (2008). E. Nuhiji and P. Mulvaney, Small 3, 1408 (2007). I. Teraoka and S. Arnold, J. Opt. Soc. Am. B 23, 1434 (2006). O. Gaathon, J. Culic-Viskota, M. Mihnev, I. Teraoka, and S. Arnold, Appl. Phys. Lett. 89, 223901 (2006). I. Teraoka and S. Arnold, J. Opt. Soc. Am. B 24, 653 (2007). E. Yu. Trofimova, A. E. Aleksenskii, S. A. Grudinkin, I. V. Korkin, D. A. Kurdyukov, and V. G. Golubev, Kolloid. Zh. 73 (4), 535 (2011). N. A. Feoktistov, V. I. Sakharov, I. T. Serenkov, V. A. Tolmachev, I. V. Korkin, A. E. Aleksenskii, A. Ya. Vul’, and V. G. Golubev, Tech. Phys. 56, 718 (2011). S. A. Grudinkin, N. A. Feoktistov, E. Yu. Trofimova, D. A. Kurdyukov, K. V. Bogdanov, A. V. Baranov, A. V. Fedorov, and V. G. Golubev, Tech. Phys. Lett. 39, 341 (2013). J. Xu, L. Yang, Y. Rui, J. Mei, X. Zhang, W. Li, Z. Ma, L. Xu, X. Huang, and K. Chen, Solid State Commun. 133, 565 (2005). E. V. Astrova and A. A. Nechitailov, Semiconductors 42, 470 (2008). L. L. Martín, P. Haro-González, I. R. Martín, D. Navarro-Urrios, D. Alonso, C. Pérez-Rodríguez, D. Jaque, and N. E. Capuj, Opt. Lett. 36, 615 (2011). A. A. Dukin, N. A. Feoktistov, V. G. Golubev, A. V. Medvedev, A. B. Pevtsov, and A. V. Sel'kin, Phys. Rev. E 67, 046602 (2003). V. G. Golubev, A. A. Dukin, A. V. Medvedev, A. B. Pevtsov, A. V. Sel'kin, and N. A. Feoktistov, Semiconductors 37, 832 (2003). D. Q. Chowdhury, D. H. Leach, and R. K. Chang, J. Opt. Soc. Am. A 11, 1110 (1994). A. N. Gruzintsev, G. A. Emel'chenko, V. M. Masalov, M. Romanelli, K. Bartkhou, P. Benalul, and A. Metr, Inorg. Mater. 44, 159 (2008). J. A. Nelder and R. Mead, Comput. J. 7, 308 (1965). N. Le Thomas, U. Woggon, W. Langbein, and M. V. Artemyev, J. Opt. Soc. Am. B 23, 2361 (2006). Y. Hara, T. Mukaiyama, K. Takeda, and M. Kuwata-Gonokami, Phys. Rev. Lett. 94, 203905 (2005).