首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development of thick hybrid-type carbon stripper foils with high durability at 1800 K for RCS of J-PARC
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Development of thick hybrid-type carbon stripper foils with high durability at 1800 K for RCS of J-PARC

机译:开发J-PARC的RCS,在1800 K下具有高耐久性的厚混合型脱碳箔

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The Japan-Proton Accelerator Research Complexes (J-PARC) requires thick carbon stripper foils (250-500 mu g/cm(2)) to strip electrons from the H- beam supplied by the linac before injection into the Rapid Cycling Synchrotron (RCS). The 200 MeV H- beam from the linac has a pulse length of 0.5 ms with a repetition rate of 25 Hz and an average beam current of 335 mu A. For this high-energy and high-intensity beam, conventional carbon stripper foils will break in a very short time and even a diamond foil will be ruptured at around 1800 K by the MW class accelerator. Thus, thick carbon stripper foils with high durability at 1800 K produced by energy deposition in the foil are indispensable for this accelerator. For this purpose, we have been developing carbon stripper foils of 350 mu g/cm(2) by means of both the controlled DC and AC/DC arc-discharge methods. Recently, we have successfully developed hybrid type thick boron-doped carbon stripper foils, which showed a drastic improvement not only with respect to the lifetime, but also with respect to thickness reduction and shrinkage at high temperature during long beam irradiation. In this report the preparation procedure and lifetime measurements with a 3.2 MeV, Ne+ beam are presented. (c) 2006 Elsevier B.V. All rights reserved.
机译:日本质子加速器研究中心(J-PARC)需要厚的碳剥离剂箔(250-500μg / cm(2))才能从直线加速器提供的H束中剥离电子,然后再注入快速循环同步加速器(RCS) )。来自直线加速器的200 MeV H光束的脉冲长度为0.5 ms,重复频率为25 Hz,平均光束电流为335μA。对于这种高能量,高强度的光束,常规的碳剥离膜会破裂在很短的时间内,甚至金刚石箔也会在MW级加速器的1800 K附近破裂。因此,对于该促进剂,必不可少的是通过在箔中进行能量沉积而在1800K下具有高耐久性的厚的碳剥离剂箔。为此,我们已经通过控制直流和交流/直流电弧放电方法开发了350μg / cm(2)的脱碳箔。最近,我们已经成功地开发了混合型厚硼掺杂碳剥离剂箔,该箔不仅在寿命方面,而且在长束辐照期间在高温下的厚度减小和收缩方面都显示出显着的改善。在此报告中,介绍了制备程序和使用3.2 MeV Ne +束的寿命测量。 (c)2006 Elsevier B.V.保留所有权利。

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