期刊文献+

红外弱光诱导掺铟铁铌酸锂晶体的光折变效应 被引量:4

PHOTOREFRACTIVE EFFECT INDUCED BY LOW-POWER INFRARED LIGHT IN INDIUM AND IRON-DOPED LITHIUM NIOBATE CRYSTALS
下载PDF
导出
摘要 掺铟铁铌酸锂(In∶Fe∶LiNbO3)晶体在红外弱光辐照下正常折射率变化量Δn可以达到10-4数量级.探讨了光生载流子在漂移、扩散和光生伏打效应三种机制下输运迁移以及空间电荷场的形成过程.研究结果表明,光致折射率变化的机制主要是由光生伏打效应引起,并观察到在正常偏振光辐照下,红外弱光与可见光引起晶体的正常折射率变化分布明显不同. Under the illumination of low-power infrared light, the ordinary refractive index changes of Illumination of indium and iron-doped lithium niobate crystals(In: Fe: LiNbO3 )can reach up to 10^-4. The migration of the photocarrier and the formative process of space field induced by photocarrier' s drift, diffusion and photovoltaic effect were studied. The investigative results show that the photovohaic effect is the main cause of the refractive index changes in the crystal. And it is also observed that under the illumination of ordinarily polarized irradiation light, the distribution of ordinary refractive index changes induced by low-power infrared light is obviously different from that of the ordinary refractive index changes induced by the visible light.
出处 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2008年第4期241-246,共6页 Journal of Infrared and Millimeter Waves
基金 国家自然科学基金(60467002) 内蒙古自然科学基金(200408020111)资助项目
关键词 掺铟铁铌酸锂晶体 红外弱光 光折变效应 光生伏打效应 In: Fe: LiNbO3 crystal low-power infrared light photorefractive effect photovoltaic effect
  • 相关文献

参考文献24

二级参考文献60

  • 1夏海瑞,王凯旋,赵壁英,陈焕矗,吕新亮,姜全忠,孙培江,胡连军.铁电钨青铜型晶体SBN和KNSBN的Raman谱研究[J].物理学报,1996,45(2):232-238. 被引量:5
  • 2[1]Mcers L E, Eckardt R C, Fejer M M, et al. Quasi-phase-matched optical parametric oscillators in bulk periodically poled LiNbO3. J.Opt.Am.B, 1995, 12: 2102-2116
  • 3[2]Byer R L. Quasi-phasematched nonlinear interactions and devices. J. Nonlinear Opt. & Materials, 1997, 6: 549-592
  • 4[3]Bisson S E, Armstrong K M, Kulp T J, et al. Broadly tunable, mode-hop-tuned cw optical parametric oscillator based on periodically poled lithium niobate. Appl.Opt., 2001, 40:6049-6053
  • 5[4]Wen Jin-ke, Wang Liang, Tang Yan-sheng, et al. Enhanced resistance to photorefraction and photovoltaic effect in Li-rich LiNb3: Mg crystals. Appl.Phys.Lett., 1988, 53(4): 260-262
  • 6[5]Capmany J, Montoya E, Bermudez V, et al. Self-frequency doubling in Yb3+ doped periodically poled LiNbO3: MgO bulk crystal. Appl.Phys.Lett., 2000, 76(11): 1374-1376
  • 7[6]Gopalan V, Mitchell T E, Furukawa Y, et al. The role of nonstoichiometry in 180°domain switching of LiNbO3 crystals. Appl.Phys.Lett., 1998, 72: 1981-1983
  • 8[7]YAO Jiang-Hong, XU Jiang-Jun, ZHANG Guang-yin, et al. Domain reversal characteristics of near-stoichiometric LiNbO3 crystals. Chin.Phys.Lett., 2000, 17: 513-514
  • 9[8]Furukawa Y, Kitamura K, Takekawa S, et al. Stoichiometric Mg: LiNbO3 as an effective material for nonlinear optical. Opt.Lett., 1998, 23: 1892-1894
  • 10[9]Furukawa Y, Kitamura K, Takekawa S, et al.Photorefraction in LiNbO3 as an function of [Li]/[Nb] and MgO concentrations. Appl.Phys.Lett., 2000, 77: 2494-2496

共引文献53

同被引文献27

  • 1张鹏,赵建林,杨德兴,王美蓉,孙一栋.LiNbO_3:Fe晶体中光写入平面光波导的导光特性研究[J].物理学报,2004,53(10):3369-3374. 被引量:7
  • 2钱祥忠.向列相液晶缺陷光子晶体可调谐滤波器的研究[J].传感技术学报,2006,19(1):50-52. 被引量:12
  • 3刘思敏,郭儒,许京军.光折变非线性光学及其应用[M].北京:科学出版社,2003.57-58.
  • 4Volk T R, Rubinana N M. Anewoptical damage resisrant impu-rity in lithium niobate crystals: indium[J]. Ferroelectr Lett, 1992, 14: 37 - 39.
  • 5Matoba O, Itoh K, Iehioka Y. Array of photorefractive waveguides for massively parallel optical interconnections in lithium niobate[J]. Opt Lett, 1996,21(2) : 122 - 124.
  • 6Askin A , Boyd G D , Dziedzic J M, et al. Optically induced refractive index inhomogeneities in LiNbO3 and LiTaO3[J]. Appl. Phys. Lett, 1966, 9(1) :72 - 74.
  • 7Krauss T F, De La Rue R M, Brand S. Two-dimensional photonic bandgap structures at 850nm wavelength[J]. Nature, 1996,383:699- 702.
  • 8Schedin S, Pedrini G, Tiziani H J, et al. Simultaneous three-dimensional dynamic deformation measurements with pulsed digital holography [J]. Appl. Opt, 1999, 38 (34) : 7056 - 7062.
  • 9Horowitz M, Fischer B, Barad Y, et al. Photorefractive effect in a BaTiO3 crystal at the 1. 5 μm wavelength regime by two-photon absorption[J]. Opt Lett, 1996, 21 (15) : 1120 - 1122.
  • 10O. Beyer, I. Breunig, F Kalkum, et al. Photorefractive effect in iron-doped lithium niobate erystals indueed by femtosecond pulses of 1.5μm wavelength[J]. Applied physics letters, 2006, 88, 051120.

引证文献4

二级引证文献2

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