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Silicon carbide X-ray beam position monitors for synchrotron applications

机译:用于同步的碳化硅X射线束位置监视器适用于同步rotron应用

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摘要

In this work, the performance of thin silicon carbide membranes as material for radiation hard X-ray beam position monitors (XBPMs) is investigated. Thermal and electrical behavior of XBPMs made from thin silicon carbide membranes and single-crystal diamond is compared using finite-element simulations. Fabricated silicon carbide devices are also compared with a 12 mm commercial polycrystalline diamond XBPM at the Swiss Light Source at the Paul Scherrer Institute. Results show that silicon carbide devices can reach equivalent transparencies while showing improved linearity, dynamics and signal-to-noise ratio compared with commercial polycrystalline diamond XBPMs. Given the obtained results and availability of electronic-grade epitaxies on up to 6 inch wafers, it is expected that silicon carbide can substitute for diamond in most beam monitoring applications, whereas diamond, owing to its lower absorption, could remain the material of choice in cases of extreme X-ray power densities, such as pink and white beams.
机译:在这项工作中,研究了薄碳化硅膜作为用于辐射硬X射线束位置监视器(XBPMS)的材料的性能。使用有限元模拟比较由薄碳化硅膜和单晶金刚石制成的XBPM的热和电能。在Paul Scherrer Institute的瑞士光源,也将制造的碳化硅器件与12 mm商业多晶金刚石XBPM相比。结果表明,碳化硅器件可以达到等效透明度,同时显示与商业多晶金刚石XBPM相比的改善的线性,动力学和信噪比。鉴于获得最多6英寸晶圆的电子级外延的结果和可用性,预计碳化硅可以在大多数光束监测应用中替代钻石,而钻石由于其较低的吸收,则可能仍然是所选的材料极端X射线功率密度的案例,如粉红色和白色梁。

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