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Proposal for optical implementation of the Wigner distribution function

机译:Wigner分配函数的光学实现的提案

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The Wigner distribution function (WDF) offers comprehensive insight into a signal, for it employs both space (or time) and frequency simultaneously. Whenever optical signals are involved, the importance of the WDF is significantly higher because of the diffraction (or dispersion) behavior of optical signals. Novel optical implementations of the WDF and of the inverse Wigner transform are proposed. Both implementations are based on bulk optics elements incorporating joint transform correlator architecture. A similar implementation is derived for the ambiguity function, which is related to the WDF through Fourier transformation. (C) 1998 Optical Society of America. [References: 7]
机译:Wigner分布函数(WDF)提供了对信号的全面了解,因为它同时使用了空间(或时间)和频率。每当涉及光信号时,由于光信号的衍射(或色散)行为,WDF的重要性就明显更高。提出了WDF和Wigner逆变换的新型光学实现。两种实现都是基于结合了联合变换相关器架构的体光学元件。对于歧义函数,得出了类似的实现,该函数通过傅立叶变换与WDF有关。 (C)1998年美国眼镜学会。 [参考:7]

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