High-precision AMS 14 C chronology for Gatecliff Shelter, Nevada

Journal of Archaeological Science - Tập 52 - Trang 621-632 - 2014
Douglas J. Kennett1, Brendan J. Culleton1, Jaime Dexter2, Scott A. Mensing3, David Hurst Thomas4
1The Pennsylvania State University, Department of Anthropology & Institutes of Energy and the Environment, University Park, PA 16802, USA
2University of Oregon, Department of Anthropology, Eugene, OR 97403, USA
3University of Nevada, Department of Geography, Reno, NV 89557, USA
4American Museum of Natural History, Department of Anthropology, New York, NY 10024, USA

Tài liệu tham khảo

Adams, 2004 Arnold, 1949, Age determination by radiocarbon content: checks with samples of known age, Science, 110, 678, 10.1126/science.110.2869.678 Arnold, 1951, Radiocarbon dates, Science, 113, 111, 10.1126/science.113.2927.111 Bamforth, 2012, Radiocarbon calibration curves, summed probability distributions, and early PaleoIndian population trends in North America, J. Archaeol. Sci., 39, 1768, 10.1016/j.jas.2012.01.017 Bayliss, 2009, Rolling out revolution: using radiocarbon dating in archaeology, Radiocarbon, 51, 123, 10.1017/S0033822200033750 Bayliss, 1999, Precise dating of the Norfolk timber circle, Nature, 402, 479, 10.1038/44993 Bennyhoff, 1983, Material culture of gatecliff shelter: shell beads and ornaments, vol. 59(1), 290 Bennyhoff, 1987, Shell bead and ornament exchange networks between California and the western great Basin, Anthropol. Pap. Am. Mus. Nat. Hist., 64, 79 Benson, 2002, Holocene multidecadal and multicentennial droughts affecting Northern California and Nevada, Quat. Sci. Rev., 21, 659, 10.1016/S0277-3791(01)00048-8 Beverly, 2010, The keck carbon cycle AMS laboratory, University of California, Irvine: status report, Radiocarbon, 52, 301, 10.1017/S0033822200045343 Boaretto, 2002, Summary findings of the fourth international radiocarbon intercomparison (FIRI)(1998-2001), J. Quat. Sci., 17, 633, 10.1002/jqs.702 Bronk Ramsey, 1995, Radiocarbon calibration and analysis of stratigraphy: the OxCal program, Radiocarbon, 37, 461, 10.1017/S0033822200030903 Bronk Ramsey, 2000, Comment on 'The Use of Bayesian statistics for 14C dates of chronologically ordered samples: a critical analysis, Radiocarbon, 42, 199, 10.1017/S0033822200059002 Bronk Ramsey, 2001, Development of the radiocarbon program OxCal, Radiocarbon, 43, 355, 10.1017/S0033822200038212 Bronk Ramsey, 2009, Bayesian analysis of radiocarbon dates, Radiocarbon, 51, 337, 10.1017/S0033822200033865 Bronk Ramsey, 2009, Dealing with outliers and offsets in radiocarbon dating, Radiocarbon, 51, 1023, 10.1017/S0033822200034093 Bronk Ramsey, 2013 Bronk Ramsey, 2010, Radiocarbon-Based Chronology for Dynastic Egypt, Science, 328, 1554, 10.1126/science.1189395 Brown, 1988, Improved collagen extraction by modified longin method, Radiocarbon, 30, 171, 10.1017/S0033822200044118 Buchanan, 2008, PaleoIndian demography and the extraterrestrial impact hypothesis, Proc. Natl. Acad. Sci. U. S. A., 105, 11651, 10.1073/pnas.0803762105 Buck, 1996 Buck, 1999, BCal: an on-line Bayesian radiocarbon calibration tool, Internet Archaeol., 7 Butzer, 1978, Toward an integrated, contextual approach in archaeology: a personal view, J. Archaeol. Sci., 5, 191, 10.1016/0305-4403(78)90039-0 Butzer, 2012, Collapse, environment, and society, Proc. Natl. Acad. Sci., 109, 3632, 10.1073/pnas.1114845109 Colledge, 2010, Reassessing the evidence for the cultivation of wild crops during the Younger Dryas at Tell Abu Hureyra, Syria. Environ. Archaeol., 15, 124, 10.1179/146141010X12640787648504 Culleton, 2006, Implications of a freshwater radiocarbon reservoir correction for the timing of late Holocene settlement of the Elk Hills, Kern County, California, J. Archaeol. Sci., 33, 1331, 10.1016/j.jas.2006.01.013 Culleton, 2008, Crude demographic proxy reveals nothing about paleoindian population, Proc. Natl. Acad. Sci. U. S. A., 105, E111, 10.1073/pnas.0809092106 Culleton, 2006, Intra-shell radiocarbon variability in marine mollusks, Radiocarbon, 48, 387, 10.1017/S0033822200038820 Culleton, 2012, A Bayesian AMS 14C chronology of the classic Maya Center of Uxbenká, Belize, J. Archaeol. Sci., 39, 1572, 10.1016/j.jas.2011.12.015 Danzeglocke, 2007 Davis, 1993 DeNiro, 1988, Chemical, enzymatic and spectroscopic characterization of “collagen” and other organic fractions from prehistoric bones, Geochim. Cosmochim. Acta, 52, 2197, 10.1016/0016-7037(88)90122-6 Dye, 1994, Apparent ages of marine shells: implications for archaeological dating in Hawaii, Radiocarbon, 36, 51, 10.1017/S0033822200014326 Elston, 1986, Prehistory of the western area, vol. 11, 135 Elston, 2013, Washo archaeology: Clued in by Clewlow: great Basin projectile Point chronology: still relevant?, J. Calif. Gt. Basin Anthropol., 33, 127 Erlandson, 2014, Archaeology and the Anthropocene, Anthropocene Erlandson, 1996, An archaeological and paleontological chronology for daisy cave (CA-SMI-261), San Miguel Island, California, Radiocarbon, 38, 355, 10.1017/S0033822200017689 2008 Fitzpatrick, 2006, A critical approach to 14C dating in the Caribbean: using chronometric Hygiene to evaluate chronological control and prehistoric settlement, Lat. Am. Antiq., 17, 389 Friedman, 1978 Gamble, 2005, The archaeological and genetic foundations of the European population during the Late Glacial: implications for “agricultural thinking”, Camb. Archaeol. J., 15, 193, 10.1017/S0959774305000107 Gilbert, 2008, DNA from Pre-Clovis human coprolites in Oregon, North America, Science, 320, 786, 10.1126/science.1154116 Goebel, 2011, Climate, environment, and humans in North America's Great Basin during the Younger Dryas, 12,900-11,600 calendar years ago, Quat. Int., 242, 479, 10.1016/j.quaint.2011.03.043 Gonzalez, 2003, Earliest humans in the Americas: new evidence from Mexico, J. Hum. Evol., 44, 379, 10.1016/S0047-2484(03)00004-6 Grayson, 2011 Gulliksen, 1995, TIRI report, Radiocarbon, 37, 820, 10.1017/S0033822200031404 Hallett, 1997, New accelerator mass spectrometry radiocarbon ages for the Mazama tephra layer from Kootenay National Park, British Columbia, Canada, Can. J. Earth Sci., 34, 1202, 10.1139/e17-096 Hedges, 1992, A review of current approaches in the pretreatment of bone for radiocarbon dating by AMS, Radiocarbon, 34, 279, 10.1017/S0033822200063438 Hughes, 2013, Taming time in the great Basin, J. Calif. Gt. Basin Anthropol., 33, 115 Hunt, 2006, Late colonization of Easter Island, Science, 311, 1603, 10.1126/science.1121879 Ingram, 1996, Reservoir ages in eastern Pacific coastal and estuarine waters, Radiocarbon, 38, 573, 10.1017/S0033822200030101 Inomata, 2013, Early ceremonial constructions at Ceibal, Guatemala, and the origins of lowland Maya civilization, Science, 340, 467, 10.1126/science.1234493 1982, An inter-laboratory comparison of radiocarbon measurements in tree-rings, Nature, 198, 619 Jazwa, 2013, A high-precision chronology for two house features at an early village site on western Santa Cruz Island, California, USA, Radiocarbon, 55, 185, 10.1017/S0033822200047901 Jenkins, 2012, Clovis age Western stemmed points and human coprolites at the Paisley Caves, Science, 337, 223, 10.1126/science.1218443 Kay, 1960, Paleozoic continental margin in central Nevada, western United States, Cph. Int. Geol. Congr., 21, 93 Kay, 1964, Paleozoic facies from the miogeosynclinal to the eugeosynclinal belt in thrust slices, central Nevada, Geol. Soc. Am. Bull., 75, 425, 10.1130/0016-7606(1964)75[425:PFFTMT]2.0.CO;2 Kelly, 2013, A continuous climatic impact on Holocene human population in the Rocky Mountains, Proc. Natl. Acad. Sci. U. S. A., 110, 443, 10.1073/pnas.1201341110 Kennett, 2005 Kennett, 2012, Development and disintegration of maya political systems in response to climate change, Science, 338, 788, 10.1126/science.1226299 Kennett, 2014 Kennett, 2012, A Bayesian chronological framework for determining site seasonality and contemporaneity, 37 Kennett, 2011, Bayesian analysis of high-precision AMS 14C dates from a prehistoric Mexican Shellmound, Radiocarbon, 53, 245, 10.1017/S0033822200056526 Kennett, 2013, Correlating the ancient maya and modern European calendars with high-precision AMS 14C dating, Sci. Rep., 3, 1597, 10.1038/srep01597 Kennett, 1997, Evidence for temporal fluctuations in marine radiocarbon reservoir ages in the Santa Barbara Channel, southern California, J. Archaeol. Sci., 24, 1051, 10.1006/jasc.1996.0184 Kennett, 2002, Differences in 14C age between stratigraphically associated charcoal and marine shell from the archaic period sites of kilometer 4, southern Peru: old wood or old water?, Radiocarbon, 44, 53, 10.1017/S0033822200064663 Kennett, 2013, Sociopolitical effects of Bow-and-Arrow technology in prehistoric coastal California, Evol. Anthropol., 22, 124, 10.1002/evan.21358 Kennett, 2008, Standards of evidence and PaleoIndian demographics, Proc. Natl. Acad. Sci., 105, E107, 10.1073/pnas.0808960106 Kintigh, 2014, Grand challenges for archaeology, Am. Antiq., 79, 5, 10.7183/0002-7316.79.1.5 Kuzmin, 2005, Dates are not just data: paleolithic settlement patterns in Siberia derived from radiocarbon records, Am. Antiq., 70, 73, 10.2307/40035874 Law, 1991, Cuello: resolving the chronology through direct dating of conserved and low-collagen bone by AMS, Radiocarbon, 33, 303, 10.1017/S0033822200040339 Libby, 1952 Libby, 1952, Chicago radiocarbon dates, III, Science, 116, 673, 10.1126/science.116.3025.673 Libby, 1954, Chicago radiocarbon dates, IV, Science, 119, 135, 10.1126/science.119.3083.135 Libby, 1954, Chicago radiocarbon dates, V, Science, 120, 733, 10.1126/science.120.3123.733 Libby, 1949, Age determination by radiocarbon content: worldwide assay of natural radiocarbons, Science, 109, 227, 10.1126/science.109.2827.227 Martin, 1973 Meltzer, 2006 Mensing, 2004, A Holocene pollen record of persistent droughts from Pyramid Lake, Nevada, USA, Quat. Res., 62, 29, 10.1016/j.yqres.2004.04.002 Mensing, 2013, The Late Holocene Dry Period: multiproxy evidence for an extended drought between 2800 and 1850 cal yr BP across the central Great Basin, USA, Quat. Sci. Rev., 78, 266, 10.1016/j.quascirev.2013.08.010 Mensing, 2007, Extended drought in the Great Basin western North America in the last two millennia reconstructed from pollen records, Quat. Int., 188, 79, 10.1016/j.quaint.2007.06.009 Michczyński, 2007, Is it possible to find a good Point estimate of a calibrated radiocarbon date?, Radiocarbon, 49, 393, 10.1017/S0033822200042326 Minnis, 1987, Identification of Wood from archaeological sites in the american Southwest. I. Keys for gymnosperms, J. Archaeol. Sci., 14, 121, 10.1016/0305-4403(87)90002-1 Reimer, 2009, IntCal09 and Marine09 radiocarbon age calibration curves, 0–50,000 years cal BP, Radiocarbon, 51, 1111, 10.1017/S0033822200034202 Reimer, 2013, IntCal13 and Marine13 radiocarbon age calibration curves, 0–50,000 years cal BP, Radiocarbon, 55, 1869, 10.2458/azu_js_rc.55.16947 Renfrew, 1973 Rhode, 1983, Flotation analysis of selected hearths, vol. 58(2) Rick, 1987, Dates as Data: an examination of the Peruvian preceramic radiocarbon record, Am. Antiq., 52, 55, 10.2307/281060 Rick, 2007 Roberts, 2012 Rozanski, 1992, The IAEA 14C intercomparison exercise 1990, Radiocarbon, 34, 506, 10.1017/S0033822200063761 Santos, 2004, Magnesium perchlorate as an alternative water trap in MAS graphite sample preparation: a report on sample preparation at KCCAMS at the University of California, Irvine, Radiocarbon, 46, 165, 10.1017/S0033822200039485 Satterthwaite, 1960, New radiocarbon dates and the maya correlation problem, Am. Antiq., 26, 165, 10.2307/276197 Schiffer, 1986, Radiocarbon dating and the “old wood” problem: the case of the Hohokam chronology, J. Archaeol. Sci., 13, 13, 10.1016/0305-4403(86)90024-5 Schopmeyer, 1974 Scott, 1990, An overview of all three stages of the international radiocarbon intercomparison, Radiocarbon, 32, 309, 10.1017/S0033822200012935 Scott, 2007, Error and uncertainty in radiocarbon measurements, Radiocarbon, 49, 427, 10.1017/S0033822200042351 Scott, 2012, Announcement: radiocarbon laboratory quality assurance program (SIRI), Radiocarbon, 54, 10.1017/S0033822200046889 Sharp, 1990 Shennan, 2007, Prehistoric population history: from the Late Glacial to the Late Neolithic in Central and Northern Europe, J. Archaeol. Sci., 34, 1339, 10.1016/j.jas.2006.10.031 Simms, 2008 Smith, 1997, The initial domestication of Cucurbita pepo in the Americas 10,000 years ago, Science, 276, 931, 10.1126/science.276.5314.932 Spriggs, 1989, The dating of the Island Southeast Asian Neolithic: an attempt at chronometric hygiene and linguistic correlation, Antiquity, 63, 587, 10.1017/S0003598X00076560 Stafford, 1988, Radiocarbon, 13C and 15N analysis of fossil bone: removal of humates with XAD-s resin, Geochim. Cosmochim. Acta, 52, 2257, 10.1016/0016-7037(88)90128-7 Stafford, 1991, Accelerator radiocarbon dating at the molecular level, J. Archaeol. Sci., 18, 35, 10.1016/0305-4403(91)90078-4 Steier, 2000, The use of Bayesian statistics for 14C dates of chronologically ordered samples: a critical analysis, Radiocarbon, 19, 183, 10.1017/S0033822200058999 Stuiver, 1977, Discussion: reporting of 14C data, Radiocarbon, 19, 355, 10.1017/S0033822200003672 Stuiver, 1986, A computer program for radiocarbon age calibration, Radiocarbon, 28, 1022, 10.1017/S0033822200060276 Stuiver, 1993, Extended 14C database and revised CALIB radiocarbon calibration program, Radiocarbon, 35, 215, 10.1017/S0033822200013904 Stuiver, 2005 Stuiver, 1981, Atmospheric 14C changes resulting from fossil fuel release and cosmic ray flux variability, Earth Planet. Sci. Lett., 53, 349, 10.1016/0012-821X(81)90040-6 Suess, 1967, Bristlecone pine calibrations of the radiocarbon time scale from 4100 B.C. to 1500 B.C, 143 Surovell, 2007, A note on the use of temporal frequency distributions in studies of prehistoric demography, J. Archaeol. Sci., 34, 1868, 10.1016/j.jas.2007.01.003 Theodorsson, 1991, Gas proportional versus liquid scintillation counting, radiometric versus AMS dating, Radiocarbon, 33, 9, 10.1017/S0033822200013163 Telford, 2004, The intercept is a poor estimate of a calibrated radiocarbon age, Holocene, 14, 296, 10.1191/0959683604hl707fa Thomas, 1980, The interdisciplinary approach to archaeology: a view from St. Catherine's Island, Georgia, 135 Thomas, 1981, How to classify the projectile points from monitor valley, Nevada, J. Calif. Gt. Basin Anthropol., 13, 7 Thomas, 1983, The archaeology of monitor Valley: 1. Epistemology, Anthropol. Pap. Am. Mus. Nat. Hist., 58 Thomas, 1983, Material culture of Gatecliff Shelter: projectile points, vol. 59(1), 177 Thomas, 2008, Native American landscapes of St. Catherine's Island, Georgia, I. The theoretical framework, Anthropol. Pap. Am. Mus. Nat. Hist., 1 Thomas, 2013, Great Basin projectile Point chronology: still relevant?, J. Calif. Gt. Basin Anthropol., 33, 133 Thomas, 1983, Material culture of gatecliff Shelter: Incised stones, vol. 59(1), 246 Thompson, 1983, Paleobotany of Gatecliff Shelter: packrat (Neotoma) middens from Gatecliff Shelter and Holocene migrations of woodland plants, vol. 59(1), 157 van Andel, 2003, Archaeological dates as proxies for the spatial and temporal human presence in Europe: a discourse on the method, 21 van Klinken, 1999, Bone collagen quality indicators for paleodietary and radiocarbon measurements, J. Archaeol. Sci., 26, 687, 10.1006/jasc.1998.0385 Vogel, 1986, Pretoria radiocarbon dates III, Radiocarbon, 28, 1133, 10.1017/S003382220002018X Ward, 1978, Procedures for comparing and combining radiocarbon age determinations: a critique, Archaeometry, 20, 19, 10.1111/j.1475-4754.1978.tb00208.x Waters, 2007, Redefining the age of Clovis: implications for the peopling of the Americas, Science, 315, 1122, 10.1126/science.1137166 Weiner, 2010 Weninger, 2007 Wigand, 2002, Great Basin vegetation history and aquatic systems: the last 150,000 years, 309 Willey, 1980 Woodbridge, 2014, The impact of the Neolithic agricultural transition in Britain: a comparison of pollen-based land-cover and archaeological 14C date-inferred population change, J. Archaeol. Sci., 51, 216, 10.1016/j.jas.2012.10.025 2006 Zdanowicz, 1999, Mount Mazama eruption: calendrical age verified and atmospheric impact assessed, Geology, 27, 621, 10.1130/0091-7613(1999)027<0621:MMECAV>2.3.CO;2