Thin Epitaxial Films of Photorefractive Materials

M. Gower, N. Vainos, K. Youden, R. Eason
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Abstract

Provided they can be satisfactorily fabricated, the use of thin films of photorefractive material as four wave mixing media for real time holographic application is an extremely attractive alternative to the use of the bulk crystal. For example, because guided wave intensities in the film can be very high-even when using lowered cw laser sources, the response time for holographic recording can be very fast. For example, ~100 mW of power coupled in a ~1 cm wide 1µm thick stripe of BaTiO3 film should reduce the response time from ~1 sec at 100 mW/cm2 in the bulk crystal to ~100 µsec in the film. Furthermore, with thin photorefractive films large area real time phase conjugate mirror operation with low powered laser sources can be contemplated.
光折变材料的外延薄膜
如果光折变材料薄膜能够令人满意地制造出来,那么作为实时全息应用的四波混合介质,使用光折变材料薄膜是一种非常有吸引力的替代使用体晶体的方法。例如,由于薄膜中的导波强度可以非常高,即使使用较低的连续波激光源,全息记录的响应时间也可以非常快。例如,~100 mW的功率耦合在~1 cm宽1 μ m厚的BaTiO3薄膜条纹中,可以将响应时间从块状晶体中100 mW/cm2时的~1秒缩短到膜中的~100 μ秒。此外,利用薄的光折变膜,可以考虑在低功率激光源下进行大面积实时相位共轭镜操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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