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Diffraction of Gaussian beams on intracavity Bragg gratings

机译:高斯光束在腔内布拉格光栅上的衍射。

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摘要

The diffraction of Gaussian beams on intracavity Bragg gratings is analyzed theoretically. For reasonable waists the associated beam divergence does not significantly influence the diffraction efficiency of such devices. Nevertheless, the tilt angle of the incident beam, imposed by the Bragg resonance condition, strongly reduces the diffraction efficiency at short grating periods. However, the angular selectivity can be maintained if the Fabry-Perot cavity is tuned to the incident beam direction, which allows the use of small-volume holograms together with a dense angular multiplex. This theoretical analysis can be applied to the optimization of the diffraction properties of Gaussian beams on any intracavity Bragg grating, which could then be used for free-space parallel signal processing. (C) 2005 Optical Society of America.
机译:从理论上分析了高斯光束在腔内布拉格光栅上的衍射。对于合理的腰部,相关的光束发散不会显着影响此类设备的衍射效率。然而,由布拉格共振条件引起的入射光束的倾斜角极大地降低了短光栅周期的衍射效率。但是,如果将Fabry-Perot腔调谐到入射光束方向,则可以保持角度选择性,这允许使用小体积全息图和密集的角度多路复用。该理论分析可用于优化高斯光束在任何腔内布拉格光栅上的衍射特性,然后可将其用于自由空间并行信号处理。 (C)2005年美国眼镜学会。

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