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Time-dependent wave front propagation simulation of a hard x-ray split-and-delay unit: Towards a measurement of the temporal coherence properties of x-ray free electron lasers

机译:硬X射线分裂和延迟单元随时间变化的波前传播模拟:旨在测量X射线自由电子激光器的时间相干特性

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For the European x-ray free electron laser (XFEL) a split-and-delay unit based on geometrical wavefront beam splitting and multilayer mirrors is built which covers the range of photon energies from 5 keV up to 20 keV. Maximum delays between $mathrm{ensuremath{Delta}}ensuremath{au}=ifmmodepmelseextpmi{}2.5ext{ }ext{ }mathrm{ps}$ at $hensuremath{u}=20ext{ }mathrm{keV}$ and up to $mathrm{ensuremath{Delta}}ensuremath{au}=ifmmodepmelseextpmi{}23ext{ }ext{ }mathrm{ps}$ at $hensuremath{u}=5ext{ }ext{ }mathrm{keV}$ will be possible. Time-dependent wave-optics simulations have been performed by means of Synchrotron Radiation Workshop software for XFEL pulses at $hensuremath{u}=5ext{ }ext{ }mathrm{keV}$. The XFEL radiation was simulated using results of time-dependent simulations applying the self-amplified spontaneous emission code FAST. Main features of the optical layout, including diffraction on the beam splitter edge and optics imperfections measured with a nanometer optic component measuring machine slope measuring profiler, were taken into account. The impact of these effects on the characterization of the temporal properties of XFEL pulses is analyzed. An approach based on fast Fourier transformation allows for the evaluation of the temporal coherence despite large wavefront distortions caused by the optics imperfections. In this way, the fringes resulting from time-dependent two-beam interference can be filtered and evaluated yielding a coherence time of ${ensuremath{au}}_{c}=0.187ext{ }ext{ }mathrm{fs}$ (HWHM) for real, nonperfect mirrors, while for ideal mirrors a coherence time of ${ensuremath{au}}_{c}=0.191ext{ }ext{ }mathrm{fs}$ (HWHM) is expected.
机译:对于欧洲X射线自由电子激光器(XFEL),基于几何波前光束分裂和多层反射镜构建了一个分离延迟单元,该单元覆盖了从5 keV到20 keV的光子能量范围。 $ mathrm { ensuremath { Delta}} ensuremath { tau} = ifmmode pm else textpm fi {} 2.5 text {} text {} mathrm {ps} $之间的最大延迟h ensuremath { nu} = 20 text {} mathrm {keV} $,最多$ mathrm { ensuremath { Delta}} ensuremath { tau} = ifmmode pm else textpm fi在$ h ensuremath { nu} = 5 text {} text {} mathrm {keV} $的{} 23 text {} text {} mathrm {ps} $是可能的。已通过Synchrotron Radiation Workshop软件对$ H ensuremath { nu} = 5 text {} text {} mathrm {keV} $处的XFEL脉冲进行了随时间变化的波光仿真。 XFEL辐射是使用依赖时间的模拟结果模拟的,该结果使用了自放大的自发发射代码FAST。考虑了光学布局的主要特征,包括分束器边缘的衍射和使用纳米光学元件测量机斜度测量轮廓仪测量的光学缺陷。分析了这些影响对XFEL脉冲的时间特性表征的影响。尽管由光学缺陷引起的大的波前畸变,但基于快速傅立叶变换的方法仍允许评估时间相干性。通过这种方式,可以过滤和评估由与时间有关的两束干扰产生的条纹,产生的相干时间为$ { ensuremath { tau}} _ {c} = 0.187 text {} text {} mathrm {fs} $(HWHM)用于真实的,非完美的镜像,而对于理想的镜像,相干时间为$ { ensuremath { tau}} _ {c} = 0.191 text {} text {} mathrm {fs} $ (HWHM)。

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