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Future hadron colliders: From physics perspectives to technology R&D

机译:未来的强子对撞机:从物理角度到技术研发

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摘要

High energy hadron colliders have been instrumental to discoveries in particle physics at the energy frontier and their role as discovery machines will remain unchallenged for the foreseeable future. The full exploitation of the LHC is now the highest priority of the energy frontier collider program. This includes the high luminosity LHC project which is made possible by a successful technology-readiness program for Nb_3Sn superconductor and magnet engineering based on long-term high-field magnet R&D programs. These programs open the path towards collisions with luminosity of 5 × 10~(34) cm~(-2) s~(-1) and represents the foundation to consider future proton colliders of higher energies. This paper discusses physics requirements, experimental conditions, technological aspects and design challenges for the development towards proton colliders of increasing energy and luminosity.
机译:高能强子对撞机已经在能量前沿的粒子物理学发现中发挥了重要作用,在可预见的未来,高能强子对撞机作为发现机器的作用将继续受到挑战。现在,充分利用大型强子对撞机是能源前沿对撞机计划的最高优先事项。这包括高发光度的LHC项目,该项目是通过长期的高磁场磁体R&D计划的Nb_3Sn超导体和磁体工程的成功技术就绪计划而实现的。这些程序打开了通往5×10〜(34)cm〜(-2)s〜(-1)发光度的碰撞之路,并为考虑未来高能质子对撞机奠定了基础。本文讨论了向能量和光度增加的质子碰撞器发展的物理要求,实验条件,技术方面和设计挑战。

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