Particle Colliders for High Energy Physics

D. Edwards, H. Edwards
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引用次数: 8

Abstract

The purpose of this article is to outline the development of particle colliders from their inception just over a half-century ago, expand on today's achievements, and remark on the potential of coming years. There are three main sections, entitled "Past," "Present," and "Future." "Past" starts with the electron and electron–positron colliders of the 1950s, continues through the proton rings at CERN, and concludes with LEP. Technology development enters the section Present, "which includes not only the major colliders in both the lepton and baryon worlds, but also recognition of the near-immediate entry of the Large Hadron Collider. "Future" looks at the next potential steps, the most prominent of which is an electron–positron partner to the LHC, but there are other very interesting propositions undergoing exploration that include muon storage and even conceivably departure from reliance on radio frequency acceleration.
高能物理粒子对撞机
这篇文章的目的是概述粒子对撞机的发展,从他们刚开始的半个多世纪前,扩展今天的成就,并评论未来几年的潜力。书中有三个主要部分,分别是“过去”、“现在”和“未来”。“过去”从20世纪50年代的电子和正电子对撞机开始,接着是欧洲核子研究中心的质子环,最后是LEP。技术发展进入“现在”部分,其中不仅包括轻子和重子世界的主要对撞机,还包括对大型强子对撞机即将进入的认可。“未来”着眼于下一步可能的步骤,其中最突出的是大型强子对撞机的电子-正电子伙伴,但还有其他非常有趣的提议正在探索中,包括μ子存储,甚至可以想象摆脱对射频加速的依赖。
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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