Jets and Jet Substructure at Future Colliders

Jets and Jet Substructure at Future Colliders
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DOI:
10.3389/fphy.2022.897719
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发表时间:
2022-03
期刊:
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影响因子:
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通讯作者:
J. Bonilla;G. Chachamis;B. Dillon;S. Chekanov;R. Erbacher;L. Gouskos;A. Hinzmann;S. Höche
J. Bonilla;G. Chachamis;B. Dillon;S. Chekanov;R. Erbacher;L. Gouskos;A. Hinzmann;S. Höche
中科院分区:
其他
文献类型:
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作者:
J. Bonilla;G. Chachamis;B. Dillon;S. Chekanov;R. Erbacher;L. Gouskos;A. Hinzmann;S. Höche

文献摘要

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尽管喷流子结构不是大型强子对撞机(LHC)实验的原始设计考虑,但它已成为当前物理计划的重要工具。我们研究的动机和未来的能源前沿对撞机的设计射流子结构的作用。特别是,我们讨论了一个充满活力的理论和实验研究和开发计划,以扩展射流子结构物理到未来对撞机探索的新制度的必要性。喷气子结构的有机发展与理论家和实验家之间的密切联系,并在这两个社区催化了令人兴奋的创新。我们希望这些发展将在未来的能源前沿物理计划中发挥重要作用。
Even though jet substructure was not an original design consideration for the Large Hadron Collider (LHC) experiments, it has emerged as an essential tool for the current physics program. We examine the role of jet substructure on the motivation for and design of future energy Frontier colliders. In particular, we discuss the need for a vibrant theory and experimental research and development program to extend jet substructure physics into the new regimes probed by future colliders. Jet substructure has organically evolved with a close connection between theorists and experimentalists and has catalyzed exciting innovations in both communities. We expect such developments will play an important role in the future energy Frontier physics program.