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Current Status of the Hard X-ray Nanoprobe Beamline at the SSRF

机译:SSRF硬X射线纳米探针束线的当前状态

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The hard X-ray nanoprobe beamline (HXN) designed at the Shanghai Synchrotron Radiation facility (SSRF) will be of capability to realize a focal spot size of 10 nm for hard X-rays to satisfy requirements in biology, environmental, material sciences and etc.. The beamline includes two modes of operation, high energy resolution mode and high flux mode respectively. High flux mode utilizes the multilayer KB system to obtain high-flux diffraction-limited focusing of ~10nm. An ultra-high-precision figure fabrication for diffraction-limited focusing is required to meet the Rayleigh Criterion. An idea to overcome this problem is to introduce a phase compensator upstream of the KB system to compensate the wavefront errors in the beamline. At wavelength speckle-based method will be used to measure the wavefront error in the beamline and feedback to the phase compensator. Vibration measurements have been carried out at the secondary source and endstation hutch. The flexure hinge mechanisms and high-precision actuators ensure the KB system and sample manipulator working with high stability. The building of HXN has been designed and is under construction at present.
机译:由上海同步辐射设施(SSRF)设计的硬X射线纳米探针束线(HXN)将能够实现10 X纳米的硬X射线焦点尺寸,从而满足生物学,环境,材料科学等方面的要求..光束线包括两种工作模式,分别是高能量分辨率模式和高通量模式。高通量模式利用多层KB系统获得约10nm的高通量衍射极限聚焦。为了满足瑞利准则,需要用于衍射极限聚焦的超高精度图形制作。克服此问题的一个想法是在KB系统的上游引入一个相位补偿器,以补偿光束线中的波前误差。在波长处,将使用基于斑点的方法来测量光束线中的波前误差,并将其反馈给相位补偿器。振动测量已在次要源和终端站储藏室中进行。挠性铰链机构和高精度执行器确保KB系统和样品操纵器具有很高的稳定性。 HXN的大楼已经设计并正在建造中。

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