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首页> 外文期刊>Journal of Modern Optics >A comparative investigation into planarized liquid crystal over silicon spatial light modulators
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A comparative investigation into planarized liquid crystal over silicon spatial light modulators

机译:硅空间光调制器上平面化液晶的比较研究

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摘要

Spatial light modulators (SLMs) are arguably the critical elements in coherent optical processing systems. Planarization techniques have been identified as crucial to increasing the performance of ferroelectric liquid crystal over very large scale integration SLMs when used in such systems. Planarization techniques allow enlarged and phase-flat pixel mirrors and improved liquid crystal alignment. This type of SLM is electrically addressed, i.e. transfers electrically represented information into an optical representation via binary phase modulation of the liquid crystal layer by the enlarged pixel modulation mirrors. The backplane design available for use in the study was a 176 176 pixel array dynamic random access memory. Investigations show an improvement in the device performance due to the planarization. This improvement was particularly evident when the SLMs were studied operating in a coherent optical system, where the diffraction efficiency was increased. The results compare favourably with transmissive SLMs, although further improvement in the liquid crystal quality is required.
机译:空间光调制器(SLM)可以说是相干光学处理系统中的关键要素。当在这种系统中使用时,平面化技术对于在超大规模集成SLM上提高铁电液晶的性能至关重要。平面化技术允许扩大和相位平坦的像素镜,并改善液晶排列。对这种类型的SLM进行电寻址,即通过放大的像素调制镜通过液晶层的二进制相位调制将电表示的信息转换为光学表示。可供研究使用的底板设计是176 176像素阵列动态随机存取存储器。研究表明,由于平坦化,器件性能得到了改善。当研究SLM在相干光学系统中工作时,这种改进尤其明显,其中衍射效率得到了提高。尽管需要进一步改善液晶质量,但该结果与透射SLM相比具有优势。

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