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1.中国科学院 上海应用物理研究所, 上海 201800
2.中国科学院 长春光学精密机械与物理研究所 应用光学国家重点实验室, 吉林 长春 130033
3.中国科学院大学, 北京 100049
[ "陈家华(1982-), 男, 浙江嘉兴人, 博士研究生, 高级工程师, 2005年于中国科学技术大学获得学士学位, 主要从事同步辐射技术的研究。E-mail:chenjiahua@sinap.ac.cn" ]
龚学鹏(1982-), 男, 内蒙古赤峰人, 博士, 副研究员, 2010年于吉林大学获得博士学位, 主要从事精密机械设计与工程CAE分析的研究。E-mail:gongxuepeng120@foxmail.com GONG Xue-peng, E-mail:gongxuepeng120@foxmail.com
收稿日期:2017-03-27,
录用日期:2017-5-8,
纸质出版日期:2017-11-25
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陈家华, 龚学鹏, 薛松, 等. 软X射线光发射电子显微镜光束线聚焦用KB镜系统[J]. 光学 精密工程, 2017,25(11):2810-2816.
Jia-hua CHEN, Xue-peng GONG, Song XUE, et al. KB mirror system of X-ray photo-emission electron microscope beamline[J]. Optics and precision engineering, 2017, 25(11): 2810-2816.
陈家华, 龚学鹏, 薛松, 等. 软X射线光发射电子显微镜光束线聚焦用KB镜系统[J]. 光学 精密工程, 2017,25(11):2810-2816. DOI: 10.3788/OPE.20172511.2810.
Jia-hua CHEN, Xue-peng GONG, Song XUE, et al. KB mirror system of X-ray photo-emission electron microscope beamline[J]. Optics and precision engineering, 2017, 25(11): 2810-2816. DOI: 10.3788/OPE.20172511.2810.
研制了光发射电子显微镜(PEEM)高精度微聚焦系统,以实现上海光源软X射线PEEM光束线的高质量聚焦。根据上海光源PEEM光束线的概况,给出微聚焦系统光学元件的基本参数。基于Kirkpatrick-Baez(KB镜)两镜方案,设计了PEEM线微聚焦系统。介绍了KB镜姿态调整机构的设计方案,即利用三垂直线性驱动装置和两水平线性驱动装置相结合来实现五维调节,分析了姿态调节机构的原理与工作过程,给出了微聚焦系统的整体设计方案。测试了KB镜系统的机械性能,给出水平调节机构以及第一面镜子Pitch运动的测试结果,结果显示:水平调节机构分辨率为0.6 μm,重复精度为0.85 μm,Pitch角度分辨率为0.4",重复精度为0.5",优于指标要求。其它参数的测试结果亦均优于指标要求。实验表明,微聚焦系统机械指标的实现保证了PEEM线光斑的高质量聚焦。
A high accuracy micro-focusing system was designed to improve the light spot focusing quality of the X-ray beam-line for Photo-emission Electron Microscope (PEEM) in Shanghai Synchrotron Radiation Facility(SSRF). The layout of PEEM beam-line of the SSRF was introduced and basic parameters of optics of the micro-focusing system were presented. Two Kirkpatrick-Baez mirrors (KB mirror) were adopted to finish the design of micro-focusing system. The design scheme of a key component-posture adjusting mechanism in the system was introduced. Namely
a three vertical linear driving equipment and a two horizontal linear driving device were combined to implement five-dimensional adjustment of the system. The working principle and process of the posture adjusting mechanism were introduced
and the overall design scheme of micro-focusing system were analyzed deeply. The mechanical performance of KB mirror system was tested
and the testing results of the horizontal adjusting mechanism and the pitch motion of first mirror were given. That the resolution and repeat accuracy of horizontal adjusting mechanism are 0.6 μm and 0.85 μm respectively
and those of pitch motion are 0.4" and 0.5" respectively
which are better than that of the technical requirements. The other parameters were tested as well
and the results also satisfy the technical requirements. The realization of technical targets of KB mirror system guarantees the high quality focusing of PEEM bean-line.
光发射电子显微镜[EB/OL]. http://www.instrument.com.cn/netshow/sh100250/c29168.htm http://www.instrument.com.cn/netshow/sh100250/c29168.htm . 2012.
Photoemission electron microscope[EB/OL]. http://www.instrument.com.cn/netshow/sh100250/c29168.htm http://www.instrument.com.cn/netshow/sh100250/c29168.htm . 2012. (in Chinese)
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MATSUYAMAS, FUJⅡ M, YAMAUCHI K. Simulation study of four-mirror alignment of advanced Kirkpatrick-Baez optics[J]. Nuclear Instruments and Methods in Physics Research Section A:Accelerators, Spectrometers, Detectors and Associated Equipment, 2010, 616(2-3):241-245.
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RAU C, LIU W. Cone-beam imaging with sub-100 nm focal-sized Kirkpatrick-Baez mirrors[J]. Nuclear Instruments and Methods in Physics Research Section A:Accelerators, Spectrometers, Detectors and Associated Equipment, 2007, 582(1):132-134.
穆宝忠, 伊圣振, 黄圣铃, 等. ICF用Kirkpatrick-Baez型显微镜光学设计[J].强激光与粒子束, 2008, 20(3):409-412.
MU B ZH, YI SH ZH, HUANG SH L, et al.. Optical design of Kirkpatrick-Baez microscope for ICF[J]. High Power Laser and Particle Beams, 2008, 20(3):409-412. (in Chinese)
潘宁宁, 王占山, 顾春时, 等. X射线用Kirkpatrick-Baez显微镜成像质量的研究[J].强激光与粒子束, 2006, 18(1):61-65.
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于海, 万秋华, 卢新然, 等.光电编码器误差检测转台的动态精度标定[J].光学 精密工程, 2016, 24(11):2699-2704.
YU H, WAN Q H, LU X R, et al.. Calibration of dynamic precision for measurement platform of photoelectric encoder[J]. Opt. Precision Eng., 2016, 24(11):2699-2704. (in Chinese)
刘书桂, 宋宣晓, 韩振华.球形靶标中心成像点的高精度定位[J].光学 精密工程, 2016, 24(8):1861-1870.
LIU SH G, SONG X X, HAN ZH H. High-precision positioning of projected point of spherical target center[J]. Opt. Precision Eng., 2016, 24(8):1861-1870. (in Chinese)
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