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由源位移和光学像差引起的焦移。

Focal shift induced by source displacements and optical figure errors.

作者信息

Manfredda Michele, Raimondi Lorenzo, Mahne Nicola, Zangrando Marco

机构信息

Elettra-Sincrotrone Trieste SCpA, SS 14 - km 163.5, 34149 Basovizza, Trieste Italy.

Istituto Officina dei Materiali - CNR, SS 14 - km 163.5, 34149 Basovizza, Trieste Italy.

出版信息

J Synchrotron Radiat. 2019 Sep 1;26(Pt 5):1503-1513. doi: 10.1107/S1600577519010099. Epub 2019 Aug 20.

Abstract

In this work the longitudinal shifts of the focal plane of an ellipsoidal mirror induced by longitudinal shifts of the source and by the optical figure error of the mirror itself are investigated. The case of an ideal mirror illuminated by a Gaussian beam is considered first, deriving an analytical formula predicting the source-to-focus shift. Then the realistic case of a mirror affected by surface shape defects is examined, by taking into account metrological data and numerically solving the Huygens-Fresnel integral. The analytical and numerical solutions in the ideal and real cases are compared. Finally, it is shown that an additional dependence of the focal shift is introduced on the wavelength and the pointing angle of the source. Both effects are investigated by numerical computations. We limit the treatment in the XUV spectral range, choosing as a test bench the Kirkpatrick-Baez mirror system of the DiProI and LDM end-stations and at the FERMI seeded free-electron laser (FEL). The work is primarily aimed at disentangling the different causes of focal shift at FEL light sources, where source position, wavelength and pointing angle are either tunable or rapidly fluctuating. The method can be easily extended to parabolic reflectors and refractors (lenses) with other kinds of illuminating sources and wavelengths.

摘要

在这项工作中,研究了由光源的纵向位移和椭球面镜自身的光学形状误差引起的椭球面镜焦平面的纵向位移。首先考虑由高斯光束照射的理想镜子的情况,推导了预测光源到焦点位移的解析公式。然后,通过考虑计量数据并对惠更斯 - 菲涅耳积分进行数值求解,研究了受表面形状缺陷影响的镜子的实际情况。比较了理想情况和实际情况下的解析解和数值解。最后,结果表明,焦移还额外依赖于光源的波长和指向角。通过数值计算研究了这两种效应。我们将处理范围限制在XUV光谱范围内,选择DiProI和LDM终端站以及费米种子自由电子激光(FEL)的柯克帕特里克 - 贝兹镜系统作为测试平台。这项工作主要旨在厘清FEL光源处焦移的不同成因,在FEL光源中,光源位置、波长和指向角要么是可调的,要么是快速波动的。该方法可以很容易地扩展到具有其他类型照明源和波长的抛物面反射镜和折射镜(透镜)。

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