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Coherent optical three-dimensional spectrum-correlation processing of wave signals based on space-time integration

机译:基于时空积分的波信号相干光学三维频谱相关处理

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摘要

The architectures of classical analog coherent optical (ACO) spectrum analyzers and correlators are not designed to process the wave signal as a whole, i.e., simultaneously in three dimensions. In this paper, the theory of ACO three-dimensional direct spectrum-correlation processing of spatial-temporal optical replicas (copies) of wave signals is discussed. In the single-stage and two-stage ACO systems, the spatial power spectrum and spatial correlation function of the wave signal (envelope) are obtained on the basis of space-time integration. The geometry of the final compressed signal in the output plane of either optical system allows one to evaluate the angle of wave arrival. The wave signal to be processed can theoretically have any form (due to autocorrelation properties of the systems) and an unlimited duration (due to time integration of wave energy and possibility of electronic subtraction of the intermediate bias terms of the time integration).
机译:经典模拟相干光学(ACO)频谱分析仪和相关器的体系结构并未设计为整体(即同时在三个维度上)处理波信号。本文讨论了波信号时空光学复制品(副本)的ACO三维直接光谱相关处理的理论。在单级和两级ACO系统中,在时空积分的基础上获得了波信号(包络)的空间功率谱和空间相关函数。任一光学系统的输出平面中最终压缩信号的几何形状都可以评估波的到达角度。理论上,要处理的波信号可以具有任何形式(由于系统的自相关特性)和无限的持续时间(由于波能量的时间积分以及时间积分的中间偏差项的电子减法的可能性)。

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  • 来源
    《Applied optics》 |2012年第33期|共10页
  • 作者

    Vasily Ezhov;

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  • 正文语种 eng
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