Superconducting Accelerators for High-Power X-ray production

T. Kroc
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Abstract

To date, linear accelerators (linacs) as electron sources used to produce ionizing radiation for industrial purposes have been limited to less than 100 kW. When the electron beam is used directly, this is sufficient for most potential applications. However, when the electron beam is used for the production of photons (x-rays) which are then to be used in an application, this is not sufficient to compete with other sources of photons (gamma rays from cobalt-60). This paper will discuss a compact superconducting RF (CSRF) accelerator system that relies on emerging technologies that will be able to produce electron beam powers into the 100s of kW with efficiencies much better than present linacs. The focus is to produce x-ray beams for medical device sterilization to provide alternatives for the present use of cobalt-60 for this purpose.
用于大功率x射线生产的超导加速器
迄今为止,作为电子源用于产生电离辐射的工业用途的直线加速器(linacs)已被限制在小于100千瓦。当电子束被直接使用时,这对于大多数潜在的应用来说是足够的。然而,当电子束用于产生光子(x射线),然后用于应用时,这不足以与其他光子源(来自钴-60的伽马射线)竞争。本文将讨论一种紧凑的超导射频(CSRF)加速器系统,该系统依赖于新兴技术,能够产生100千瓦的电子束功率,效率远高于现有的直线加速器。重点是生产用于医疗器械灭菌的x射线束,为目前为此目的使用的钴-60提供替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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