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Active aberration correction for the writing of three-dimensional optical memory devices

机译:用于写入三维光学存储设备的主动像差校正

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We describe an active optical system that both measures and corrects the aberrations introduced when writing three-dimensional bit-oriented optical memory by a two-photon absorption process. The system uses a ferroelectric liquid-crystal spatial light modulator (FLCSLM) configured as an arbitrary wave-front generator that is reconfigurable at speeds as great as 2.5 kHz. A method of aberration measurement by the FLCSLM wave-front generator is described. The same device is also used to correct the induced aberrations by preshaping the wave fronts with the conjugate phase aberration as well as to scan the focal spot in three dimensions. Experimental results show the correction of both on- and off-axis aberrations, allowing the writing of data at depths as great as 1 mm inside a LiNbO3 crystal. (C) 2002 Optical Society of America. [References: 14]
机译:我们描述了一种主动光学系统,该系统既可以测量也可以校正通过双光子吸收过程写入三维位定向光学存储器时引入的像差。该系统使用配置为任意波前发生器的铁电液晶空间光调制器(FLCSLM),其速度可高达2.5 kHz。描述了一种由FLCSLM波前发生器测量像差的方法。该设备还用于通过使用共轭相位像差对波前进行预成形以及在三个维度上扫描焦点来校正感应像差。实验结果表明,可以校正轴上和轴外的像差,从而可以在LiNbO3晶体内部的1mm深度处写入数据。 (C)2002年美国眼镜学会。 [参考:14]

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