期刊文献+

Holographic Storage Properties of In:Fe:Mn:LiNbO_3 Crystals

Holographic Storage Properties of In:Fe:Mn:LiNbO_3 Crystals
下载PDF
导出
摘要 In:Fe:Mn:LiNbO3(LN) crystals were grown in air atmosphere by Czochralski method with different concentration of In (0, 1, 2, 3 mol%) in the melts, while the contents of Fe2O3 and MnO were 0.1 and 0.5 mol%, respectively. The location of doping ions was analyzed by Ultravioletvisible absorption spectra and differential thermal analysis. The diffraction efficiency (η), writing time (τw) and erasure time (τe) of the crystals were measured by two-beam coupling experiment. The dynamic range and photorefractive sensitivity have also been calculated. The results showed that with the increase of In ions in the melt, the absorption edge of In:Fe:Mn:LN crystal shifts to the violet firstly and then makes the Einstein shift, the Curie temperature of crystal increases firstly and then decreases, the storage ratio speeds up, diffraction efficiency decreases, and dynamic range and photorefractive sensitivity increase. The mechanism of holographic storage properties of In:Fe: Mn:LN crystal with different doping concentration of In^3+ was investigated, suggesting the In: Fe:Mn:LN crystals are excellent holographic storage materiel with better synthetical properties than Fe:Mn:LN crystals. In:Fe:Mn:LiNbO3(LN) crystals were grown in air atmosphere by Czochralski method with different concentration of In (0, 1, 2, 3 mol%) in the melts, while the contents of Fe2O3 and MnO were 0.1 and 0.5 mol%, respectively. The location of doping ions was analyzed by Ultravioletvisible absorption spectra and differential thermal analysis. The diffraction efficiency (η), writing time (τw) and erasure time (τe) of the crystals were measured by two-beam coupling experiment. The dynamic range and photorefractive sensitivity have also been calculated. The results showed that with the increase of In ions in the melt, the absorption edge of In:Fe:Mn:LN crystal shifts to the violet firstly and then makes the Einstein shift, the Curie temperature of crystal increases firstly and then decreases, the storage ratio speeds up, diffraction efficiency decreases, and dynamic range and photorefractive sensitivity increase. The mechanism of holographic storage properties of In:Fe: Mn:LN crystal with different doping concentration of In^3+ was investigated, suggesting the In: Fe:Mn:LN crystals are excellent holographic storage materiel with better synthetical properties than Fe:Mn:LN crystals.
出处 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 北大核心 2007年第10期1218-1222,共5页 结构化学(英文)
基金 Harbin Science and Technology Project (No. 2005AA5CG058) Natural Science Foundation of Heilongjiang Province (No. A0203)
关键词 In:Fe:Mn:LiNbO3 crystal location of doping ions holographic storage properties In:Fe:Mn:LiNbO3 crystal, location of doping ions, holographic storage properties
  • 相关文献

参考文献12

  • 1Wang, B.; Wang, R.; Nie, Y. R.; Xu, Y. H. Opt. Mater. 2003, 23, 273-276.
  • 2Gunter, R; Ha Igard, J. P. [M] New York:Springer-verlag 1988, 61-62.
  • 3Yariv, A.; Orlov, S.; Rakuljic. G. J. Opt. Sac. Am. B 1996, 13, 2513-2523.
  • 4Buse, K. Materials. Appl. Phys. B 1997, 64, 391-407.
  • 5Zech, R. G.Opt. & Photonics News 1992, 16-25.
  • 6Hesselink, L.; Sergei, S.; Alice, L.; Annapoorna, A.; David, L.; Ramakar. R.J. Sci. 1998, 292, 1089-1094.
  • 7Zheng, W.; Guan, C. X.; Zhao, L. C.; Xu, Y. H. J. Phys. Chem. Solids. 2003, 64, 1371-1374.
  • 8O'Bryan, H. M.; Gallagher, R.K, Brandle, C. D. J. Am. Ceram. Soc. 1985, 68, 493-496.
  • 9Lerner, P.; Legras, C.; Dumas, J. R J. Cryst. Growth 1968, 231, 3-4.
  • 10Zhen, X. H.; Zhao, L. C.; Xu, Y. H. Appl. Phys. B 2003, 76, 655-659.

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