W. Scandale
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引用次数: 5

摘要

在过去的五十年里,质子-质子和质子-反质子对撞机一直是高能物理研究中最强大的工具。它们也深刻地催化了加速器物理和技术的创新。在大量被提议的对撞机中,只有四个真正成功地投入使用:ISR、SppbarS、Tevatron和LHC。另一个强子对撞机,RHIC,最初是为离子-离子碰撞而设计的,也被部分地用极化质子操作。尽管有大量文献记录了它们,但本文的目的是快速综合它们的主要特性和关键性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proton–Proton and Proton–Antiproton Colliders
In the last five decades, proton–proton and proton–antiproton colliders have been the most powerful tools for high energy physics investigations. They have also deeply catalyzed innovation in accelerator physics and technology. Among the large number of proposed colliders, only four have really succeeded in becoming operational: the ISR, the SppbarS, the Tevatron and the LHC. Another hadron collider, RHIC, originally conceived for ion–ion collisions, has also been operated part-time with polarized protons. Although a vast literature documenting them is available, this paper is intended to provide a quick synthesis of their main features and key performance.
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