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Beam fanning effect and image storage in Ce: KNSBN crystal
作者姓名:LI  PanLai  GUO  QingLin  WANG  ZhiJun  PANG  LiBin  LIANG  BaoLai
作者单位:College of Physics Science & Technology, Hebei University, Baoding 071002, China
基金项目:Supported by the Natural Science Foundation of Hebei Province (Grant No. F20060010023)
摘    要:A non-synchronously-numerating experimental system is applied in this research.The effect of the incident beam intensity I and the beam incident angleθon beam fanning effect is investigated with a singular beam incident on Ce:KNSBN crystal.The results show that the beam fanning effect strongly depends on I andθ.The threshold effect of I for the beam fanning in Ce:KNSBN crystal is observed,and the threshold intensity of incident beam keeps the same value of 38.2 mW/cm 2 for differentθ,and the steady beam fanning intensity Ifsat reaches a peak atθ=15°under the same I.In addition,the effect of the incident beam modulated on the beam fanning noise and holographic storage in Ce:KNSBN crystal is studied.And the results suggest that the beam fanning noise is effectively suppressed,and the quality of the reappearance image is greatly improved.

关 键 词:Ce:KNSBN晶体  光束扇形散射效应  图象存储  光折变
收稿时间:13 October 2006
修稿时间:2006-10-132006-11-27

Beam fanning effect and image storage in Ce: KNSBN crystal
LI PanLai GUO QingLin WANG ZhiJun PANG LiBin LIANG BaoLai.Beam fanning effect and image storage in Ce: KNSBN crystal[J].Chinese Science Bulletin,2007,52(8):1024-1028.
Authors:Li PanLai  Guo QingLin  Wang ZhiJun  Pang LiBin  Liang BaoLai
Institution:(1) College of Physics Science & Technology, Hebei University, Baoding, 071002, China
Abstract:A non-synchronously-numerating experimental system is applied in this research. The effect of the incident beam intensity I and the beam incident angle θ on beam fanning effect is investigated with a singular beam incident on Ce:KNSBN crystal. The results show that the beam fanning effect strongly depends on I and ϑ. The threshold effect of I for the beam fanning in Ce:KNSBN crystal is observed, and the threshold intensity of incident beam keeps the same value of 38.2 mW/cm2 for different ϑ, and the steady beam fanning intensity I fsat reaches a peak at ϑ=15° under the same I. In addition, the effect of the incident beam modulated on the beam fanning noise and holographic storage in Ce:KNSBN crystal is studied. And the results suggest that the beam fanning noise is effectively suppressed, and the quality of the reappearance image is greatly improved. Supported by the Natural Science Foundation of Hebei Province (Grant No. F20060010023)
Keywords:Ce:KNSBN crystal  beam fanning effect  threshold characteristic  image storage
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