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Polarization holographic high-density optical data storage in bacteriorhodopsin film

机译:细菌视紫红质膜中的偏振全息高密度光学数据存储

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摘要

Optical films containing the genetic variant bacteriorhodopsin BR-D96N were experimentally studied in view of their properties as media for holographic storage. Different polarization recording schemes were tested and compared. The influence of the polarization states of the recording and readout waves on the retrieved diffractive image's intensity and its signal-to-noise ratio were analyzed. The experimental results showed that, compared with the other tested polarization relations during holographic recording, the discrimination between the polarization states of diffracted and scattered light is optimized with orthogonal circular polarization of the recording beams, and thus a high signal-to-noise ratio and a high diffraction efficiency are obtained. Using a He-Ne laser (633 nm, 3 mW) for recording and readout, a spatial light modulator as a data input element, and a 2D-CCD sensor for data capture in a Fourier-transform holographic setup, a storage density of 2 X 10~(8) bits/cm~(2) was obtained on a 60 X 42 (mu)m~(2) area in the BR-D96N film. The readout of encoded binary data was possible with a zero-error rate at the tested storage density.
机译:考虑到它们作为全息存储介质的性质,对含有遗传变异细菌视紫红质BR-D96N的光学膜进行了实验研究。测试和比较了不同的偏振记录方案。分析了记录波和读出波的偏振态对检索到的衍射图像强度及其信噪比的影响。实验结果表明,与全息记录过程中其他测试的偏振关系相比,利用记录光束的正交圆偏振优化了衍射光和散射光的偏振态之间的区别,因此具有较高的信噪比和获得高衍射效率。使用He-Ne激光器(633 nm,3 mW)进行记录和读出,使用空间光调制器作为数据输入元件,以及使用2D-CCD传感器进行傅里叶变换全息设置中的数据捕获,存储密度为2在BR-D96N膜的60×42μm〜(2)的面积上获得×10〜(8)位/ cm〜(2)。在测试的存储密度下,可以零错误率读取编码的二进制数据。

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