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Future colliders for particle physics-'Big and small'

机译:粒子物理的未来对撞机-“大与小”

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Discoveries at high-energy particle colliders have established the standard model of particle physics. Technological innovation has helped to increase the collider energy at a much faster pace than the corresponding costs. New concepts will allow reaching ever higher luminosities and energies throughout the coming century. Cost-effective strategies for the collider implementation include staging. For example, a future circular collider could first provide electron-positron collisions, then hadron collisions (proton-proton and heavy-ion), and finally the collision of muons. Cooling-free muon colliders, realizable in a number of ways, promise an attractive and energy-efficient path towards lepton collisions at tens of TeV. While plasma accelerators and dielectric accelerators offer unprecedented gradients, the construction of a high-energy collider based on these new technologies still calls for significant improvements in cost and performance. Pushing the accelerating gradients or bending fields ever further, the breakdown of the QED vacuum may set an ultimate limit to electromagnetic acceleration. Finally, some ideas are sketched for reaching, or exceeding, the Planck energy. (c) 2018 Published by Elsevier B.V.
机译:高能粒子对撞机的发现建立了粒子物理学的标准模型。技术创新以比相应成本快得多的速度帮助增加了对撞机的能量。新概念将在未来的一个世纪中达到更高的发光度和能量。对撞机实施的经济高效策略包括分期。例如,未来的圆形对撞机可以首先提供电子-正电子碰撞,然后提供强子碰撞(质子-质子和重离子),最后提供μ子碰撞。可通过多种方式实现的无冷却μ子对撞机,有望以诱人且节能的方式实现数十TeV的轻子碰撞。尽管等离子加速器和介电加速器提供了前所未有的梯度,但基于这些新技术的高能对撞机的构造仍需要在成本和性能上进行重大改进。进一步推动加速梯度或弯曲场,QED真空的破坏可能会最终限制电磁加速度。最后,勾勒出一些达到或超过普朗克能量的想法。 (c)2018年由Elsevier B.V.

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