论文标题

黑暗淋浴的理论,现象学和实验途径:雪地2021报告

Theory, phenomenology, and experimental avenues for dark showers: a Snowmass 2021 report

论文作者

Albouy, Guillaume, Barron, Jared, Beauchesne, Hugues, Bernreuther, Elias, Bona, Marcella, Cazzaniga, Cesare, Cesarotti, Cari, Cohen, Timothy, de Cosa, Annapaola, Curtin, David, Demiragli, Zeynep, Doglioni, Caterina, Elliot, Alison, DiPetrillo, Karri Folan, Eble, Florian, Erice, Carlos, Freer, Chad, Garcia-Bellido, Aran, Gemmell, Caleb, Genest, Marie-Hélène, di Cortona, Giovanni Grilli, Gustavino, Giuliano, Hemme, Nicoline, Holmes, Tova, Kar, Deepak, Knapen, Simon, Kulkarni, Suchita, Lavezzo, Luca, Lowette, Steven, Maier, Benedikt, Mee, Seán, Mrenna, Stephen, Nair, Harikrishnan, Niedziela, Jeremi, Papageorgakis, Christos, Parmar, Nukulsinh, Paus, Christoph, Pedro, Kevin, Peixoto, Ana, Perloff, Alexx, Plehn, Tilman, Scherb, Christiane, Schwaller, Pedro, Shelton, Jessie, Singh, Akanksha, Sinha, Sukanya, Sjöstrand, Torbjörn, Spourdalakis, Aris G. B., Stolarski, Daniel, Strassler, Matthew J., Usachov, Andrii, Sierra, Carlos Vázquez, Verhaaren, Christopher B., Wang, Long

论文摘要

在这项工作中,我们考虑了强烈耦合的黑暗/隐藏扇区的情况,该扇区通过添加附加的非亚伯仪群来扩展标准模型(SM)。这些扩展通常包含物质字段,就像sm夸克一样,仪表字段和类似于SM弹力的仪表字段。我们专注于探索此类部门,其中在LHC通过门户生产了黑暗颗粒,并在深色部门内快速在衰败的黑暗部门内进行了快速的强调,至少部分地是有可能具有较大的寿命,从而提供了一系列可能具有壮观的签名,例如出现的签名,例如出现或可见的Jets。还讨论了其他类似QCD的场景,导致柔软的无聚集能量模式或粘合球。在对理论进行了综述,现有的基准和约束之后,这项工作解决了如何从基本的物理参数中构建一致的基准,并为Pythia Hidden Valley模块提供新的发展以及JET子结构研究。最后,提出了一系列改进的搜索策略,以便更好地探索LHC的黑暗阵雨。

In this work, we consider the case of a strongly coupled dark/hidden sector, which extends the Standard Model (SM) by adding an additional non-Abelian gauge group. These extensions generally contain matter fields, much like the SM quarks, and gauge fields similar to the SM gluons. We focus on the exploration of such sectors where the dark particles are produced at the LHC through a portal and undergo rapid hadronization within the dark sector before decaying back, at least in part and potentially with sizeable lifetimes, to SM particles, giving a range of possibly spectacular signatures such as emerging or semi-visible jets. Other, non-QCD-like scenarios leading to soft unclustered energy patterns or glueballs are also discussed. After a review of the theory, existing benchmarks and constraints, this work addresses how to build consistent benchmarks from the underlying physical parameters and present new developments for the PYTHIA Hidden Valley module, along with jet substructure studies. Finally, a series of improved search strategies is presented in order to pave the way for a better exploration of the dark showers at the LHC.

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