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Adaptive aberration compensation system using a high-resolution liquid crystal on silicon spatial light phase modulator

机译:在硅空间光相位调制器上使用高分辨率液晶的自适应像差补偿系统

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We have developed a liquid-crystal-on-silicon spatial light modulator (LCOS-SLM) and examined its performance capability as a wavefront corrector with an adaptive optics (AO) test system. The LCOS-SLM has a high light-utilization efficiency so that it is suitable for AO in ophthalmic instruments. Experimental results with a static phase object showed nearly diffraction-limited performance. The root-mean-square (RMS) value of residual wavefront error was reduced to 0.06 wavelength from 2.09 wavelength. The capability for dynamic aberration correction was also examined. The time-varying aberration was created by rotating the same phase object. While the RMS wavefront error became slightly larger, a nearly diffraction-limited performance could be confirmed as same as in the static aberration correction. Effective stroke and refraction power of the LCOS-SLM were also discussed theoretically. The estimated effective stroke and refraction power were 40 microns and 2.5D for a beam of 8-mm diameter on the LCOS-SLM, respectively.
机译:我们已经开发了硅上液晶空间光调制器(LCOS-SLM),并通过自适应光学(AO)测试系统检查了其作为波前校正器的性能。 LCOS-SLM具有很高的光利用效率,因此适用于眼科仪器中的AO。静态物体的实验结果显示出几乎衍射极限的性能。残留波前误差的均方根(RMS)值从2.09波长减小到0.06波长。还检查了动态像差校正的能力。时变像差是通过旋转相同的相位对象创建的。尽管RMS波前误差稍大一些,但可以确认与静态像差校正中的衍射极限几乎相同。理论上还讨论了LCOS-SLM的有效行程和屈光力。对于LCOS-SLM上直径为8 mm的光束,估计的有效行程和屈光力分别为40微米和2.5D。

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