MHz重复频率自由电子激光器压电偏置镜亚纳米级热变形补偿方案。

IF 2.5 3区 物理与天体物理 Journal of Synchrotron Radiation Pub Date : 2025-01-01 DOI:10.1107/S1600577524011469
Baoning Sun, Qinming Li, Chuan Yang, Kai Hu, Zhongmin Xu, Xiaohao Dong, Weiqing Zhang, Xueming Yang
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引用次数: 0

摘要

以MHz重复频率工作的自由电子激光(FEL)设备可以发射平均功率达到数百瓦的激光。这种能量的部分吸收在镜面上引起几微米的热变形。这种变形降低了反射光子光束的特性,导致焦斑像差和波前畸变不能满足实验要求。需要一种鲁棒的方法来校正镜面形状以满足marsamchal准则。本文提出了一种利用压电变形镜对重复频率为MHz的偏移镜进行热变形补偿的方案。镜子侧装,槽内填充铟镓合金,槽内装有用于水冷却的铜管。十八组压电致动器对称地连接在顶部和底部表面。该方案结合了有限元模拟分析和后处理验证,利用差分进化(DE)算法进行全局优化。该算法有效地解决了传统奇异值分解算法无法处理的电压约束问题。在x射线波长为1 nm时,反射镜的峰谷高度误差从1340.8 nm减小到1.1 nm,均方根高度误差从859.1 nm减小到0.18 nm。斜率误差校正为154 nrad PV和24 nrad RMS。在x射线波长3 nm处也取得了显著的结果。波光学仿真验证了该方法的可靠性,并系统分析了对关键反射镜参数和条件的影响。
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Thermal deformation compensation scheme to the sub-nanometre level of a piezoelectric offset mirror for MHz repetition rate free-electron laser.

Free-electron laser (FEL) facilities operating at MHz repetition rates can emit lasers with average powers reaching hundreds of watts. Partial absorption of this power induces thermal deformation of a few micrometres on the mirror surface. Such deformation degrades the characteristics of the reflected photon beam, leading to focal spot aberrations and wavefront distortions that fail to meet experimental requirements. A robust method is necessary to correct the mirror surface shape to meet the Maréchal criterion. This paper proposes a thermal deformation compensation scheme for offset mirrors operating at MHz repetition rates using a piezoelectric deformable mirror. The mirror is side-mounted with slots filled with an indium-gallium alloy, which house copper tubes for water cooling. Eighteen groups of piezo actuators are symmetrically attached to the top and bottom surfaces. The scheme incorporates finite-element analysis for simulation and post-processing verification, utilizing a differential evolution (DE) algorithm for global optimization. The DE algorithm effectively addresses the voltage constraints that the traditional singular value decomposition algorithm cannot handle. Under an X-ray wavelength of 1 nm, the peak-to-valley (PV) height error of the mirror was reduced from 1340.8 nm to 1.1 nm, and the root-mean-square (RMS) height error decreased from 859.1 nm to 0.18 nm. The slope error was corrected to 154 nrad PV and 24 nrad RMS. Significant results were also achieved at an X-ray wavelength of 3 nm. Wave-optics simulations verified the reliability of this approach, and effects on key mirror parameters and conditions were systematically analysed.

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来源期刊
Journal of Synchrotron Radiation
Journal of Synchrotron Radiation INSTRUMENTS & INSTRUMENTATIONOPTICS&-OPTICS
CiteScore
5.60
自引率
12.00%
发文量
289
审稿时长
1 months
期刊介绍: Synchrotron radiation research is rapidly expanding with many new sources of radiation being created globally. Synchrotron radiation plays a leading role in pure science and in emerging technologies. The Journal of Synchrotron Radiation provides comprehensive coverage of the entire field of synchrotron radiation and free-electron laser research including instrumentation, theory, computing and scientific applications in areas such as biology, nanoscience and materials science. Rapid publication ensures an up-to-date information resource for scientists and engineers in the field.
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