论文标题

现代和未来的对山脉

Modern and Future Colliders

论文作者

Shiltsev, Vladimir, Zimmermann, Frank

论文摘要

自20世纪中叶的带电粒子壁的最初发展以来,这些先进的科学仪器一直处于高能量物理学中科学发现的最前沿。对撞机的加速器技术和光束物理学已经取得了长足的进步,现代设施现在以比1960年代初期的开拓性撞机大的能量和亮度运行。此外,排行者的领域仍然非常动态,并继续开发许多创新的方法。实际上,目前正在考虑设计和构建更强大的未来山脉,目前正在考虑一些新颖的概念。在本文中,我们首先回顾了碰撞光束方法和山脉历史,然后介绍了操作机器的主要成就以及目前正在开发的近期撞机项目的关键特征。我们以对远处攻针的众多建议和研究的分析进行了结论。对其各自潜力的评估揭示了对撞机领域进一步突破的诱人前景。

Since the initial development of charged particle colliders in the middle of the 20th century, these advanced scientific instruments have been at the forefront of scientific discoveries in high energy physics. Collider accelerator technology and beam physics have progressed immensely and modern facilities now operate at energies and luminosities many orders of magnitude greater than the pioneering colliders of the early 1960s. In addition, the field of colliders remains extremely dynamic and continues to develop many innovative approaches. Indeed, several novel concepts are currently being considered for designing and constructing even more powerful future colliders. In this paper, we first review the colliding beam method and the history of colliders, and then present the major achievements of operational machines and the key features of near-term collider projects that are currently under development. We conclude with an analysis of numerous proposals and studies for far-future colliders. The evaluation of their respective potentials reveals tantalizing prospects for further significant breakthroughs in the collider field.

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