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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Temporal memory effects in photorefractive two-beam coupling: a study comparing n-doped and p-doped BaTiO3 at 514 nm and 830 nm
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Temporal memory effects in photorefractive two-beam coupling: a study comparing n-doped and p-doped BaTiO3 at 514 nm and 830 nm

机译:光折变两束光耦合中的时间记忆效应:比较514 nm和830 nm处n掺杂和p掺杂的BaTiO3的研究

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The photorefractive gain and time response of n-doped and p-doped BaTiO3 were compared in the visible, lambda = 514 nm, and in the infrared, lambda = 830 nm. Two-beam coupling experiments were conducted for beam ratios between 3600:1, 5000:1, and 8000:1. In both infrared and visible it was observed that the measured gains were higher for the p-BaTiO3 by an order of magnitude or more. When the gain was high, a temporal memory effect was observed, suggesting that the time dependence of the space-charge field is determined by the history of the modulation depth. This effect is shown to be consistent with the Kukhtarev equations for a single carrier. Low-gain behavior was observed at all interaction angles for both crystals in the IR. In the visible the high-gain temporal memory effect is reported for the p-BaTiO3. (C) 1998 Optical Society of America. [References: 21]
机译:在可见光λ= 514 nm和红外光λ= 830 nm中比较了n掺杂和p掺杂的BaTiO3的光折变增益和时间响应。针对3600:1、5000:1和8000:1之间的光束比进行了两束耦合实验。在红外和可见光中,观察到对-BaTiO 3的测量增益都高一个数量级或更多。当增益高时,观察到时间记忆效应,这表明空间电荷场的时间依赖性由调制深度的历史确定。事实表明,这种效应与单个载波的Kukhtarev方程一致。在红外中,两种晶体在所有相互作用角均观察到低增益行为。在可见光中,据报道p-BaTiO3具有高增益时间记忆效应。 (C)1998年美国眼镜学会。 [参考:21]

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