Progress in diffractive phase gratings used for spot array generation

R. Morrison, S. Walker
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引用次数: 12

Abstract

Prototype free-space photonic switching[1] and optical computing systems[2] rely on spot array generating systems to produce illumination needed to transfer information between arrays of optical processing elements. In these systems, the light from a single laser is split into a set of beams that are focussed onto an array of optical logic devices, such as S-SEEDs[3]. Although several methods are available for generating spot arrays[4], diffraction gratings (also referred to as Dammann gratings[5] [6]) were chosen to generate the spot arrays. Their advantages can be traced to the ease with which they are incorporated into an optical system. As illustrated in figure 1, the grating is simply inserted into the collimated beam with the appropriate imaging optics. Their operation is relatively insensitive to alignment. Provided the collimated beam illuminates a suitable size area of the grating, the performance is determined by the design and fabrication process.
用于点阵生成的衍射相位光栅的研究进展
原型自由空间光子开关[1]和光计算系统[2]依靠点阵列产生系统来产生在光学处理元件阵列之间传递信息所需的照明。在这些系统中,来自单个激光器的光被分成一组光束,这些光束被聚焦到一系列光学逻辑设备上,比如S-SEEDs[3]。虽然有几种方法可用于产生光斑阵列[4],但我们选择衍射光栅(也称为达曼光栅[5][6])来产生光斑阵列。它们的优点可以追溯到它们被并入光学系统的容易程度。如图1所示,该光栅是简单地插入到准直光束与适当的成像光学。它们的操作对对齐相对不敏感。当准直光束照射到合适尺寸的光栅区域时,其性能取决于设计和制造工艺。
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