利用维格纳函数的部分相干辐射传播

B. Nash, N. Goldring, J. Edelen, S. Webb, R. Celestre
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引用次数: 4

摘要

来自同步加速器光源的波动辐射必须沿着光束线从光源传输到样品。部分相干光子束可以用维格纳函数在相空间中表示,它的输运可以使用一些与粒子束输运相似的技术。我们在光束线由线性聚焦和散焦部分以及光圈组成的情况下描述这一过程。我们提出了包含线性变换和卷积的光束线映射的紧凑表示。我们创建了一个1:1成像系统(4f系统),在成像平面上有一个单狭缝,并观察其下游的辐射。我们沿着这个样本光束线传播高斯光束和波动辐射,并从当前和未来的超低发射度光源中绘制参数。我们导出了部分相干高斯情况下的解析表达式,包括通过单狭缝孔径。我们将Wigner函数计算与同步辐射车间(SRW)代码中的解析表达式和部分相干计算进行了基准测试。
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Propagation of partially coherent radiation using Wigner functions
Undulator radiation from synchrotron light sources must be transported down a beamline from the source to the sample. A partially coherent photon beam may be represented in phase space using a Wigner function, and its transport may use some similar techniques as is familiar in particle beam transport. We describe this process in the case that the beamline is composed of linear focusing and defocusing sections as well as apertures. We present a compact representation of the beamline map involving linear transformations and convolutions. We create a 1:1 imaging system (4f system) with a single slit on the image plane and observe the radiation downstream to it. We propagate a Gaussian beam and undulator radiation down this sample beamline, drawing parameters from current and future ultra low emittance light sources. We derive an analytic expression for the partially coherent Gaussian case including passage through a single slit aperture. We benchmark the Wigner function calculation against the analytical expression and a partially coherent calculation in the Synchrotron Radiation Workshop (SRW) code.
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