Search for light long-lived particles decaying to displaced jets in proton-proton collisions at $\sqrt{s}$ = 13.6 TeV

CMS Collaboration
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Abstract

A search for light long-lived particles decaying to displaced jets is presented, using a data sample of proton-proton collisions at a center-of-mass energy of 13.6 TeV, corresponding to an integrated luminosity of 34.7 fb$^{-1}$, collected with the CMS detector at the CERN LHC in 2022. Novel trigger, reconstruction, and machine-learning techniques were developed for and employed in this search. After all selections, the observations are consistent with the background predictions. Limits are presented on the branching fraction of the Higgs boson to long-lived particles that subsequently decay to quark pairs or tau lepton pairs. An improvement by up to a factor of 10 is achieved over previous limits for models with long-lived particle masses smaller than 60 GeV and proper decay lengths smaller than 1 m. The first constraints are placed on the fraternal twin Higgs and folded supersymmetry models, where the lower bounds on the top quark partner mass reach up to 350 GeV for the fraternal twin Higgs model and 250 GeV for the folded supersymmetry model.
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在$\sqrt{s}$ = 13.6 TeV质子-质子对撞中寻找衰变为位移喷流的轻型长寿命粒子
本文利用 2022 年欧洲核子研究中心大型强子对撞机的 CMS 探测器收集的质子-质子对撞数据样本,对衰变为位移喷流的轻型长寿命粒子进行了搜索,其质量中心能量为 13.6 TeV,对应的综合光度为 34.7fb$^{-1}$。我们开发了新颖的触发、重建和机器学习技术,并将其应用于此次搜索。经过所有选择,观测结果与背景预测一致。对希格斯玻色子到长寿命粒子(随后衰变为夸克对或头轻子对)的分支分数提出了限制。对于长寿命粒子质量小于 60 GeV 和适当衰变长度小于 1 m 的模型,比以前的限值最多提高了 10 倍。对兄弟孪生希格斯玻色子和折叠超对称模型施加了第一个约束,其中兄弟孪生希格斯玻色子模型和折叠超对称模型的顶夸克伙伴质量下限分别达到 350 GeV 和 250 GeV。
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First search for axion dark matter with a Madmax prototype Measurement of top-quark pair production in association with charm quarks in proton-proton collisions at $\sqrt{s}=13$ TeV with the ATLAS detector Measurements of polarization and spin correlation and observation of entanglement in top quark pairs using lepton+jets events from proton-proton collisions at $\sqrt{s}$ = 13 TeV Search for light long-lived particles decaying to displaced jets in proton-proton collisions at $\sqrt{s}$ = 13.6 TeV Gamma/hadron discrimination through the analysis of the shower footprint at low energies
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