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首页> 外文期刊>Physical Review. Accelerators and Beams >Laser polishing of niobium for superconducting radio-frequency accelerator applications
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Laser polishing of niobium for superconducting radio-frequency accelerator applications

机译:铌的激光抛光,用于超导射频加速器应用

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Interior surfaces of niobium cavities used in superconducting radio frequency accelerators are now obtained by buffered chemical polish and/or electropolish. Laser polishing is a potential alternative, having advantages of speed, freedom from noxious chemistry and availability of in-process inspection. We studied the influence of the laser power density and laser beam raster rate on the surface topography. These two factors need to be combined carefully to smooth the surface without damage. Computational modeling was used to estimate the surface temperature and gain insight into the mechanism of laser polishing. Power spectral density analysis of surface topography measurements shows that laser polishing can produce smooth topography similar to that obtained by electropolish. This is a necessary first step toward introducing laser polishing as an alternative to the currently practiced chemical polishing.
机译:现在通过缓冲化学抛光和/或电抛光获得用于超导射频加速器的铌腔的内表面。激光抛光是一种潜在的替代方法,它具有速度快,不受有害化学物质影响以及可进行过程检查的优点。我们研究了激光功率密度和激光束光栅速率对表面形貌的影响。这两个因素需要仔细组合以使表面光滑而不损坏。使用计算模型来估计表面温度,并深入了解激光抛光的机理。表面形貌测量的功率谱密度分析表明,激光抛光可以产生类似于电抛光获得的平滑形貌。这是迈向引入激光抛光以替代当前实践的化学抛光的必要的第一步。

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