期刊文献+

Anomalous behaviour of long-time increase in diffraction efficiency of photorefractive grating in Ce:BaTiO3 in dark

Anomalous behaviour of long-time increase in diffraction efficiency of photorefractive grating in Ce:BaTiO3 in dark
下载PDF
导出
摘要 Anomalous long-time increase of the diffraction efficiency is observed in dark-decay experiments of photorefractive gratings in Ce:BaTiO3. It is deduced that a phase-conjugate beam is induced by the writing beam at acute angle to the +c axis of the crystal and it interferes with the other writing beam to form a second grating which is perpendicular to the first grating formed by the interference between two writing beams. The rising behaviour of the diffraction efficiency results from the different decay rates of these two photorefractive gratings. Furthermore, a simplified model of two gratings, both induced by two deep traps, is proposed to account for this phenomenon and the fitting results agree well with the experimental results. Anomalous long-time increase of the diffraction efficiency is observed in dark-decay experiments of photorefractive gratings in Ce:BaTiO3. It is deduced that a phase-conjugate beam is induced by the writing beam at acute angle to the +c axis of the crystal and it interferes with the other writing beam to form a second grating which is perpendicular to the first grating formed by the interference between two writing beams. The rising behaviour of the diffraction efficiency results from the different decay rates of these two photorefractive gratings. Furthermore, a simplified model of two gratings, both induced by two deep traps, is proposed to account for this phenomenon and the fitting results agree well with the experimental results.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第4期729-734,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No 60078002),
关键词 dark decay photorefractive grating two deep-trap model Ce:BaTiO3 dark decay, photorefractive grating, two deep-trap model, Ce:BaTiO3
  • 相关文献

参考文献11

  • 1Shelby R M, Hoffnagle J A, Burr G W, Jefferson C M,Bernal M P, Coufal H, Grygier R K, Gnther H, MacFarlane R M and Sincerbox G T 1997 Opt. Lett. 22 1509.
  • 2Drolet J J P, Chuang E, Barbastathis G and Psaltis D 1997 Opt. Lett. 22 552.
  • 3Hong Z, Zhang M, Zheng H and Chen J 2004 Opt. Commun. 238 157.
  • 4Bacher G D, Chiao M P, Dunning G J, Klein M B, Nelson C C and Wechsler B A 1996 Opt. Lett. 21 18.
  • 5Yang Y P, Buse K and Psaltis D 2002 Opt. Lett. 27 158.
  • 6Kukhtarev N V, Markov V B, Odulov S G, Soskin M S and Vinetskii V L1979 Ferroelectrics 22 949.
  • 7Tayebati P and Mahgerefteh D 1991 J. Opt. Soc. Am. 158 1053.
  • 8Zhang M, Xu Y and Hong Z 2005 Chin. Phys. 14 995.
  • 9Chi M, Dou S and Ye P 1999 Acta Phys. Sin. 8 664.
  • 10Tayebati P 1991 J. Appl. Phys. 70 4082.

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