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The high versatility of silicon based micro-optical modulators

机译:硅基微光学调制器的多功能性

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摘要

"One product, one process": This MEMS law is true for micro-optical modulators, too and thus puts a high load on every product and technology development team. On the other hand the law expresses nothing but the high versatility of the underlying usually silicon based technology. A huge variety of applications where an electromagnetic wave experiences a spatial-temporal modulation makes use of this technology: High resolution as well as ultra-compact displays, optical switches in telecommunication as well as data storage devices, spectrometers e. g. for quality control, as well as adaptive optics and pattern generation to mention only a few. The applications completely differ with regard to the requirements in almost all aspects. The most important drivers to use silicon based micro-optical modulators are high accuracy, high bandwidth and high miniaturization. A continuous further development of the technology can be reported. Novel optical, mechanical and electrical working principles are investigated to meet future requirements. After a short overview of the most typical applications of silicon based micro-optical modulators the high versatility of this technology is detailed by means of selected devices and applications. Single 1D and 2D micro mirrors with diameters of up to 4 mm e. g. for projection, imaging and spectroscopy are as well presented and discussed as micro mirror arrays comprising up to 1 million analog deflectable mirrors for image generation and phase modulation in microlithography and adaptive optics.
机译:“一个产品,一个过程”:该MEMS法则也适用于微光学调制器,因此给每个产品和技术开发团队带来了沉重的负担。另一方面,法律只表达了底层通常基于硅的技术的高通用性。电磁波经历时空调制的各种应用都利用此技术:高分辨率以及超紧凑型显示器,电信中的光开关以及数据存储设备,光谱仪等。 G。在质量控制以及自适应光学和图形生成方面仅举几例。在几乎所有方面,应用程序在需求方面完全不同。使用基于硅的微光学调制器的最重要的驱动因素是高精度,高带宽和高度小型化。可以报​​告该技术的不断发展。研究了新颖的光学,机械和电气工作原理,以满足未来的需求。在简要概述了基于硅的微光学调制器的最典型应用之后,将通过选定的器件和应用来详细介绍该技术的多功能性。单个一维和二维微镜,最大直径为4 mm e。 G。用于投影,成像和光谱学的用于微镜阵列也包括微镜阵列,包括多达一百万个模拟可偏转镜,用于微光刻和自适应光学中的图像生成和相位调制。

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