期刊文献+

反Stokes荧光制冷实验中的温度测量技术 被引量:1

下载PDF
导出
摘要 反Stokes荧光制冷(anti-Stokes fluorescent cooling)是近年来快速发展起来的一种新颖的固体材料激光冷却技术。文中首先简单介绍了反Stokes荧光制冷的基本原理;其次,详细介绍了固体材料激光制冷实验中温度测量的各种新方法、新原理和新结果及其最新进展,最后简单比较了各种温度测量技术的分辨率及其优缺点。
出处 《自然科学进展》 北大核心 2005年第10期1153-1159,共7页
基金 国家教育部博士点专项基金(批准号:20040269010) 上海市重点学科发展基金和教育部"二一一"工程二期重点学科子课题的资助
  • 相关文献

参考文献13

  • 1Epstein R I,Buchwald M I, Edwards B C, et al. Observation of laser-induced fluorescent cooling of a solid. Nature, 1995, 377:500-502.
  • 2Mungan C E, Buchwald M I, Edwards B C, et al. Laser cooling of a solid by 16K starting from room temperature. Phys Rev Lett, 1997, 78(6): 1030-1033.
  • 3Gosnell T R. Laser cooling of a solid by 65K starting from room temperature. Opt Lett, 1999, 24(15):1041-1043.
  • 4FinkeiBen E, Potemski M, Wyder P, et al. Cooling of a semiconductor by luminescence up-conversion. Appl Phys Lett,1999, 75(9): 1258-1260.
  • 5Hoyt C W, Sheik-Bahae M, Epstein R I, et al. Observation of anti-Stokes fluorescence cooling in thulium-doped glass. Phys Rev Lett, 2000, 85(17): 3600- 3603.
  • 6Hoyt C W, Hasselbeck M P, Sheik-Bahae M, et al. Advances in laser -cooling of thulium-doped glass. J Opt Soc Am B, 2003, 20(5): 1066- 1074.
  • 7Rayner A, Friese M E J, Truscott A G, et al. Laser cooing of a solid from ambient temperature. J Mod Opt, 2001, 48 (1):103 -114.
  • 8Rayner A, Hirsch M, Heckenberg N R, et al. Distributed laser refrigeration. ApplOpt, 2001, 40(30): 5423-5429.
  • 9Fernandez J, Mendioroz A, Garcia A J, et al. On the origin of anti-Stokes laser-induced cooling of Yb^3+-doped glass. Opt Mater, 2001, 16:173- 179.
  • 10Fernandez J, Mendioroz A, Garcia A J, et al. Laser-induced internal cooling of Yb^3+ doped fluoride-based glasses. J Alloys Compounds, 2001, 323 324:239-244.

同被引文献32

  • 1贾佑华,印建平.固体材料激光冷却的实验研究及其最新进展[J].物理学进展,2005,25(2):153-165. 被引量:1
  • 2Epstein R I,Buchwald M I,Edwards B C,et al.Nature 1995,377(6549):500-503.
  • 3Mungan C E,Buchwald M I,Edward B C,et al.Phys.Rev.Lett,1997,78(6):1030-1033.
  • 4Luo X,Eisaman M D,Gosnell T R,et al.,Opt.Let,1998,23(8):639-641.
  • 5Gosnell T R,Opt.Lett.,1999,24(15):1041-1043.
  • 6Finkeissen.E,Potemski M,Wyder P.,et al,Appl.Phys.Lett.1999,75:1258-1260.
  • 7Hoyt C W,Sheik-Bahae M,Epstein R I,et al.Phys.Rev.Lett,2000,85 3600-3603.
  • 8Hoyt C W,Hasselbeck M P,Sheik-Bahae M,et al.J.Opt.Soc.Am.,2003,B20 (5):1066-1074.
  • 9Bowan S R,Mungan C E.Appl.Phys.,2000,B71:807-811.
  • 10Epstein R I,Browm J J,eEdwards B C,et al.J.Appl.Phys.,2001,90(9):4815-4819.

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部