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首页> 外文期刊>Journal of synchrotron radiation >Expected thermal deformation and wavefront preservation of a cryogenic Si monochromator for Cornell ERL beamlines
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Expected thermal deformation and wavefront preservation of a cryogenic Si monochromator for Cornell ERL beamlines

机译:康奈尔ERL光束线的低温Si单色仪的预期热变形和波前保持

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Cornell energy-recovery linac (ERL) beamlines will have higher power density and higher fractional coherence than those available at third-generation sources; therefore the capability of a monochromator for ERL beamlines has to be studied. A cryogenic Si monochromator is considered in this paper because the perfect atomic structure of Si crystal is needed to deliver highly coherent radiation. Since neither the total heat load nor the power density alone can determine the severity of crystal deformation, a metric called modified linear power density is used to gauge the thermal deformation. For all ERL undulator beamlines, crystal thermal deformation profiles are simulated using the finiteelement analysis tool ANSYS, and wavefront propagations are simulated using Synchrotron Radiation Workshop. It is concluded that cryogenic Si monochromators will be suitable for ERL beamlines in general.
机译:康奈尔能量回收直线加速器(ERL)光束线将比第三代电源具有更高的功率密度和分数相干性。因此,必须研究单色仪用于ERL光束线的能力。本文考虑了低温Si单色仪,因为需要硅晶体的完美原子结构来传递高度相干的辐射。由于总的热负荷和功率密度都不能单独确定晶体变形的严重程度,因此使用一种称为修正线性功率密度的度量来衡量热变形。对于所有ERL起伏器束线,使用有限元分析工具ANSYS模拟晶体热变形曲线,并使用Synchrotron Radiation Workshop模拟波前传播。结论是,低温Si单色仪通常适用于ERL光束线。

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