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Wavelength dependence of visible and near-infrared photorefraction and phase conjugation in Sn2P2S6

机译:Sn2P2S6中可见光和近红外光折射的波长依赖性和相位共轭

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摘要

The photorefractive properties of Sn2P2S6 crystals in the wavelength range from 633 to 1064 nm are investigated. Conventional yellow and modified brown crystals with a variation of nonstoichiometric defects are examined. Brown crystals respond much faster and exhibit substantially higher photorefractive gain than yellow crystals, up to 18 cm(-1) at 780 nm and 8.5 cm(-1) at 1064 nm. Ring-cavity self-pumped phase conjugation is demonstrated using both types of crystal. The phase-conjugate response of brown Sn2P2S6 is 2 orders of magnitude faster than in yellow Sn2P2S6 or Rh-doped BaTiO3, with a grating recording time below 50 ms for 30 mW power at 860 nm. Various thresholding effects are analyzed to determine the optimal wavelength range for the two types of crystal. We find an optimum in the range of 650-950 nm for yellow and in the range of 850-1100 nm for brown Sn2P2S6. (c) 2005 Optical Society of America.
机译:研究了Sn2P2S6晶体在633至1064 nm波长范围内的光折变特性。研究了具有非化学计量缺陷变化的常规黄色和改性棕色晶体。棕色晶体的响应快得多,并且比黄色晶体具有更高的光折变增益,在780 nm处可达18 cm(-1),在1064 nm处可达8.5 cm(-1)。两种类型的晶体都证明了环形腔的自泵浦相位共轭。棕色Sn2P2S6的相位共轭响应比黄色Sn2P2S6或Rh掺杂的BaTiO3快2个数量级,在860 nm波长下30 mW功率的光栅记录时间低于50 ms。分析各种阈值效应以确定两种类型晶体的最佳波长范围。我们发现黄色的最佳波长为650-950 nm,棕色的Sn2P2S6的最佳范围为850-1100 nm。 (c)2005年美国眼镜学会。

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