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SPATIAL COHERENCE OF SYNCHROTRON RADIATION

机译:同步辐射的空间相干性

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摘要

The spatial coherence properties of a monochromatic component of synchrotron radiation from an insertion device in the Fraunhofer limit are analyzed in the general case when the coherence distance is comparable with the beam width, expressing them by simple products and convolutions of Fourier transforms and autocorrelations on the single-electron field amplitude and the electron-beam position and angular distributions. In particular, the Gaussian approximation is discussed, in which case the far-field amplitude satisfies the Schell condition (its statistical properties can be described by a coherence factor depending only on the difference of the reciprocal space coordinates), and this discussion leads to simple estimates of the coherence widths. The coherence widths deviate from the Van Cittert-Zernike values when one or more of the phase space widths of the electron beam are close to (or smaller than) the diffraction limit. [References: 26]
机译:一般情况下,当相干距离与光束宽度相当时,分析来自插入装置的同步辐射的单色分量在弗劳恩霍夫极限中的空间相干特性,并通过简单乘积和傅立叶变换的卷积以及自相关在卷积上进行表达。单电子场的振幅以及电子束的位置和角度分布。特别是,讨论了高斯近似,在这种情况下,远场振幅满足Schell条件(其统计特性可以仅由倒数空间坐标的差来表示为一个相干因子),并且这种讨论导致简单相干宽度的估计。当电子束的一个或多个相空间宽度接近(或小于)衍射极限时,相干宽度偏离范切特-泽尼克值。 [参考:26]

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