论文标题

$ Z_3 $ -INVARIANT NMSSM中的Electroweak相过渡:LHC和暗物质搜索的含义以及检测引力波的前景

Electroweak Phase Transition in the $Z_3$-invariant NMSSM: Implications of LHC and Dark matter searches and prospects of detecting the gravitational waves

论文作者

Chatterjee, Arindam, Datta, AseshKrishna, Roy, Subhojit

论文摘要

We study in detail the viability and the patterns of a strong first-order electroweak phase transition as a prerequisite to electroweak baryogenesis in the framework of $Z_3$-invariant Next-to-Minimal Supersymmetric Standard Model (NMSSM), in the light of recent experimental results from the Higgs sector, dark matter (DM) searches and those from the searches of the lighter chargino and neutralinos at the大型强子对撞机(LHC)。对于后者,我们对最近的LHC分析进行了彻底的重塑。借助几个基准的场景,我们证明,尽管LHC已经开始以相对较小的$μ__\ Mathrm {eff} $来消除参数空间的区域,但有利于令人垂涎的强一阶相位过渡,但稳定地,相当稳定地,在现象学上仍然有很多参与和兼容的区域,这些区域却不是在当前的semsiment sysiment and sement sement lhh。进一步指出,这样的区域也可以与所有相关理论和实验性约束兼容。然后,我们继续分析检测随机重力波的前景,在上述理论框架内,在各种未来/拟议的实验中,这些相变会产生,这将是在各种未来/拟议的实验中产生的,并发现它们在当前预测的这些实验的敏感性下有些雄心勃勃。

We study in detail the viability and the patterns of a strong first-order electroweak phase transition as a prerequisite to electroweak baryogenesis in the framework of $Z_3$-invariant Next-to-Minimal Supersymmetric Standard Model (NMSSM), in the light of recent experimental results from the Higgs sector, dark matter (DM) searches and those from the searches of the lighter chargino and neutralinos at the Large Hadron Collider (LHC). For the latter, we undertake thorough recasts of the relevant, recent LHC analyses. With the help of a few benchmark scenarios, we demonstrate that while the LHC has started to eliminate regions of the parameter space with relatively small $μ_\mathrm{eff}$, that favors the coveted strong first-order phase transition, rather steadily, there remains phenomenologically much involved and compatible regions of the same which are yet not sensitive to the current LHC analyses. It is further noted that such a region could also be compatible with all pertinent theoretical and experimental constraints. We then proceed to analyze the prospects of detecting the stochastic gravitational waves, which are expected to arise from such a phase transition, at various future/proposed experiments, within the mentioned theoretical framework and find them to be somewhat ambitious under the currently projected sensitivities of those experiments.

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