• NUCLEAR TECHNIQUES
  • Vol. 47, Issue 1, 010001 (2024)
Manchen HUANG1, Fei HAN1,*, Ping XIAO2, Mengqi LI1, and Feng GAO3
Author Affiliations
  • 1Yunnan Key Laboratory of Earth System Science, Yunnan University, Kunming 650500, China
  • 2College of Teacher Education, Yuxi Normal University, Yuxi 653100, China
  • 3Yunnan Institute of Cultural Relics & Archaeology, Kunming 650500, China
  • show less
    DOI: 10.11889/j.0253-3219.2024.hjs.47.010001 Cite this Article
    Manchen HUANG, Fei HAN, Ping XIAO, Mengqi LI, Feng GAO. Establishing the standardised growth curves of Late Pleistocene fossil teeth for electron spin resonance dating[J]. NUCLEAR TECHNIQUES, 2024, 47(1): 010001 Copy Citation Text show less
    References

    [1] Grün R. Electron spin resonance (ESR) dating[J]. Quaternary International, 1, 65-109(1989).

    [2] Rink W J. Electron spin resonance (ESR) dating and ESR applications in quaternary science and archaeometry[J]. Radiation Measurements, 27, 975-1025(1997).

    [3] Roberts H M, Duller G A T. Standardised growth curves for optical dating of sediment using multiple-grain aliquots[J]. Radiation Measurements, 38, 241-252(2004).

    [4] Li B, Jacobs Z, Roberts R G. Investigation of the applicability of standardised growth curves for OSL dating of quartz from Haua Fteah cave, Libya[J]. Quaternary Geochronology, 35, 1-15(2016).

    [5] Li B, Roberts R G, Jacobs Z et al. Potential of establishing a ‘global standardised growth curve’ (gSGC) for optical dating of quartz from sediments[J]. Quaternary Geochronology, 27, 94-104(2015).

    [6] Li B, Roberts R G, Jacobs Z et al. Construction of a ‘global standardised growth curve’ (gSGC) for infrared stimulated luminescence dating of K-feldspar[J]. Quaternary Geochronology, 27, 119-130(2015).

    [7] LIU Ruiyuan, LAI Zhongping, LIU Xiangjun. The mathematical analysis for De error calculation in the standardized growth curve (SGC) method in OSL dating[J]. Nuclear Techniques, 36, 030205(2013).

    [8] Wang X M, Qiu F Y, Nian X M et al. Testing the applicability of standardised growth curves (SGCs) for OSL signals of quartz grains from the Yangtze Delta, China[J]. Quaternary Geochronology, 72, 101348(2022).

    [9] LI Dongxue, LIU Nannan, YANG Shengli et al. Application of quartz osl standardized growth curve for de determination in loess on the eastern Tibetan Plateau[J]. Quaternary Sciences, 41, 111-122(2021).

    [10] ZHANG Boxuan, CHEN Jie, QIN Jintang et al. Quartz optically stimulated luminescence dating of loess from waqia basin in the Pamir Plateau[J]. Quaternary Sciences, 38, 636-645(2018).

    [11] HAN Fei, XIAO Ping, LI Mengqi et al. Construction of standard growth curve of equivalent dose for ESR dating of fossils[J]. Quaternary Sciences, 42, 1401-1409(2022).

    [12] Rink W J, Schwarcz H P. Tests for diagenesis in tooth enamel: ESR dating signals and carbonate contents[J]. Journal of Archaeological Science, 22, 251-255(1995).

    [13] Lee H K, Jack Rink W, Schwarcz H P. Comparison of ESR signal dose-responses in modern and fossil tooth enamels[J]. Radiation Measurements, 27, 405-411(1997).

    [14] Han F, Bahain J J, Voinchet P et al. Radiometric dating of Meipu hominin site in China by coupled ESR/U-series and cosmogenic 26Al/10Be burial dating methods[J]. Quaternary Geochronology, 70, 101295(2022).

    [15] Han F, Sun C K, Bahain J J et al. Coupled ESR and U-series dating of fossil teeth from Yiyuan hominin site, Northern China[J]. Quaternary International, 400, 195-201(2016).

    [16] Han F, Bahain J J, Liu C R et al. Testing mathematical uranium migration models in combined ESR/U-series dating of fossil teeth from open-air sites[J]. Quaternary Geochronology, 30, 519-523(2015).

    [17] Grün R. Methods of dose determination using ESR spectra of tooth enamel[J]. Radiation Measurements, 32, 767-772(2000).

    [18] Duval M, Grün R, Falguères C et al. ESR dating of Lower Pleistocene fossil teeth: limits of the single saturating exponential (SSE) function for the equivalent dose determination[J]. Radiation Measurements, 44, 477-482(2009).

    [19] Apers D, Debuyst R, DeCanniere P, Lumleyde H, Labeyriede J. A criticism of the dating by electron paramagnetic resonance (ESR) of the stalagmitic floors of the Caune de l’Arago at Tautavel[A]. Datations et Analyses Isotopiques en Préhistoire, 533-550(1981).

    [20] Berger G W. Regression and error analysis for a saturating-exponential-plus-linear model[J]. Ancient TL, 8, 23-25(1990).

    [21] Grün R. Dose response of the paramagnetic centre at g = 2.000 7 in corals[J]. Ancient TL, 3, 20-22(1990).

    [22] HAN Fei, YIN Gongming, BAHAIN J J et al. The influence of different fitting functions on paleodose determination in ESR dating of tooth enamel - taking Longgupo tooth fossils as an example[J]. Nuclear Techniques, 34, 116-120(2011).

    [23] York D. Least squares fitting of a straight line with correlated errors[J]. Earth and Planetary Science Letters, 5, 320-324(1968).

    Manchen HUANG, Fei HAN, Ping XIAO, Mengqi LI, Feng GAO. Establishing the standardised growth curves of Late Pleistocene fossil teeth for electron spin resonance dating[J]. NUCLEAR TECHNIQUES, 2024, 47(1): 010001
    Download Citation