Chinese Optics Letters, 2020, 18 (9): 090001, Published Online: Jul. 22, 2020  

Multi-technique analysis of an ancient stratified glass eye bead by OCT, μ-XRF, and μ-Raman spectroscopy Download: 754次

Author Affiliations
1 Sci-Tech Archaeology Center, Laboratory of Micro-Nano Optoelectronic Materials and Devices, Key Laboratory of Materials for High-Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
3 Henan Provincial Institute of Cultural Relics and Archaeology, Zhengzhou 450000, China
Copy Citation Text

Junqing Dong, Qinghui Li, Yongqing Hu. Multi-technique analysis of an ancient stratified glass eye bead by OCT, μ-XRF, and μ-Raman spectroscopy[J]. Chinese Optics Letters, 2020, 18(9): 090001.

References

[1] EgodageK.MatthäusC.DochowS.SchieI. W.HärdtnerC.HilgendorfI.PoppJ., Chin. Opt. Lett.15, 090008 (2017).CJOEE31671-7694

[2] DongJ. Q.LiQ. H.YanX., Chin. J. Nat.5, 325 (2015).

[3] YangY. M.WangL. H.WeiS. Y.SongG. D.KenoyerJ. M.XiaoT. Q.ZhuJ.WangC. S., Microsc. Microanal.19, 335 (2013).MIMIF71431-9276

[4] GanF. X.LiQ. H.HendersonJ., Recent Advances in the Scientific Research on Ancient Glass and Glaze (World Scientific, 2016).

[5] LiQ. H.YangJ. C.LiL.DongJ. Q.ZhaoH. X.LiuS., Spectrochim. Acta A138, 609 (2015).

[6] GanF. X.ChengH. S.HuY. Q.MaB.GuD. H., Sci. Chin. Technol. Sc.52, 922 (2009).SCASEY1001-6511

[7] ColombanP., Appl. Phys. A79, 167 (2004).

[8] DongJ. Q.LiQ. H.LiuS., X-Ray Spectrom.44, 458 (2015).XRSPAX0049-8246

[9] KharmyssovC.KoM.W. L.KimJ. R., Chin. Opt. Lett.17, 011701 (2019).CJOEE31671-7694

[10] ZhuL. D.WangY.YuanY.ZhouH. X.ZhaoY. Q.MaZ. H., Chin. Opt. Lett.17, 041701(2019).CJOEE31671-7694

[11] HuangY.WuC. C.XiaS. Y.LiuL.ChenS. L.TongD. D.AiD. N.YangJ.WangY. T., Chin. Opt. Lett.17, 051001 (2019).CJOEE31671-7694

[12] AttaelmananA. G., X-Ray Spectrom.43, 325 (2015).XRSPAX0049-8246

[13] ZhongD. X.GuoM. S.HuY. Q.LiuS.DongJ. Q.LiQ. H., Spectrosc. Spect. Anal.39, 178 (2019).

[14] YanX.DongJ. Q.LiQ. H.GuoM. S.HuY. Q., Chin. J. Lasers41, 0908001 (2014).ZHJIDO0258-7025

[15] AoyamaH.YamagiwaK.FujimotoS.IzumiJ.IshikawaR.KameshimaS.ArakakiT., X-Ray Spectrom.47, 265 (2018).XRSPAX0049-8246

[16] YamagiwaK.FujimotoS.AoyamaH.IzumiJ.KameshimaS.ArakakiT., J. Archaeol. Sci. Rep.26, 101879 (2019).

[17] FranqueloM. L.DuranA.CastaingJ.DavidA. A.Pérez-RodríguezJ. L., Talanta.89, 462 (2012).TLNTA20039-9140

[18] ArizioE.OrsegaE. F.FalconeR.VallottoM., Environ. Sci. Pollut. Res. Int.21, 13243 (2014).ESPLEC0944-1344

[19] ColombanP., J. Non-Cryst. Solids.323, 180 (2003).JNCSBJ0022-3093

[20] ColombanP.AurélieT.Bellot-GurletL., J. Raman Spectrosc.37, 841 (2006).JRSPAF0377-0486

[21] TourniéA.PrinslooL. C.ColombanP., J. Raman Spectrosc.532, 43 (2011).JRSPAF0377-0486

[22] BeckH. C., Archaeologia77, 1 (1928).

[23] KwanS. M., Early Chinese Glass (Chinese University of Hong Kong, 2001).

[24] LiQ. H.LiuS.ZhaoH. X.GanF. X.ZhangP., Archaeometry56, 601 (2014).ARCHAG

[25] ZhaoH. X.LiQ. H.LiuS.GanF. X., J. Raman Spectrosc.44, 643 (2013).JRSPAF0377-0486

[26] LiQ. H.DongJ. Q., Natl. Pal. Mus. Mon. Chin. Art421, 42 (2018).

[27] ZhaoD. Y., Acta Arch. Sin.2, 177 (2012).

[28] LiuS.GanF. X.LiQ. H., Spectrosc. Lett.48, 302 (2015).SPLEBX0038-7010

[29] ZhaoH. X.LiQ. H., J. Raman Spectrosc.48, 1103 (2017).JRSPAF0377-0486

[30] BonneauA.MoreauJ. F.HancockR. G.KarklinsK., Beads26, 35 (2014).

[31] DongJ. Q.LiQ. H.LiuS., X-Ray Spectrom. (2020).XRSPAX0049-8246

[32] LiuS.LiQ. H.FuQ.GanF. X.XiongZ. M., X-Ray Spectrom.42, 470 (2013).XRSPAX0049-8246

[33] LiuS.LiQ. H.GanF. X.LanktonJ., J. Archaeol. Sci.39, 2128 (2012).JASCDU

[34] García-HerasM.RincónJ. M.JimenoA.VillegasM. A., J. Archaeol. Sci.32, 727 (2005).JASCDU

[35] WedepohlK. H., Glas in Antike und Mittelalter: Geschichte eines Werkstoffs (Schweizerbart, 2003).

[36] HussonE.RepelinY.VandenborreM. T., Spectrochim. Acta A40, 1017 (1984).

[37] TiteM. S.ShortlandA. J., Production Technology of Family and Related Early Vital Materials (University of Oxford, 2008).

[38] XieJ., “A Raman spectroscopy study of hyperfine structure of aluminosilicate and feldspar,” Master’s Thesis (China University of Geosciences, 2008).

[39] MernaghT. P., J. Raman Spectrosc.22, 453 (1991).JRSPAF0377-0486

Junqing Dong, Qinghui Li, Yongqing Hu. Multi-technique analysis of an ancient stratified glass eye bead by OCT, μ-XRF, and μ-Raman spectroscopy[J]. Chinese Optics Letters, 2020, 18(9): 090001.

引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!