论文标题
在未来的Proton-Proton Collider和Hyper-Kamiokande实验中探测具有重力中心的超对称性大统一理论
Probing the Supersymmetric Grand Unified Theories with Gravity Mediation at the Future Proton-Proton Colliders and Hyper-Kamiokande Experiment
论文作者
论文摘要
有了大沙漠假设,我们提议在未来的质子 - 普罗替子(PP)山脉和Hyper-Kamiokande实验中探究超对称的大统一理论(肠)。在本文中,我们研究了带有重力介导的超对称性断裂的超对称肠道的细节。首先,考虑到通过重型玻色子交换的尺寸六质子衰减,我们指出,我们可以在Hyper-Kamiokande实验中探测具有肠尺度$ M_ {gut} $最高$ 1.778 \ times 10^{16} $ GEV的超对称肠。第二,对于带有$ m_ {gut} \ ge 1.0 \ times 10^{16} $ gev和$ m_ {geut} \ ge 1.2 \ ge times 10^{16} $ gev的超对称肠道,我们显示了通用仪表上的上限和$ 7.2 $ 3.5 tev,因此,我们显示的上限为$ 7.2 $ 3.5,并在8.2 $ 3.5上,并且相应地是8.5 $ 3.5,并且是GLU的3.5; TEV分别。此外,我们还将研究详细介绍Charginos,中性,Squarks,Slectons和Higgs颗粒的质量。特别是,可以在Hyper-Kamiokande实验中探测具有$ M_ {gut} \ leq 1.2 \ times 10^{16} $ gev的超对称胆量$ {\ rm fcc} _ {\ rm hh} $和sppc通过gluino搜索。因此,可以通过$ {\ rm fcc} _ {\ rm hh} $,sppc和hyper-kamiokande实验来探测具有重力介导的超对称肠。在我们先前的研究中,我们已经表明,具有异常和量规介导的超对称性断裂的超对称肠道在这些实验的范围内很好。因此,我们的建议为$ {\ rm fcc} _ {\ rm hh} $,sppc和hyper-kamiokande实验提供了具体的科学目标:探测超对称性肠道。
With the grand desert hypothesis, we have proposed to probe the supersymmetric Grand Unified Theories (GUTs) at the future proton-proton (pp) colliders and Hyper-Kamiokande experiment previously. In this paper, we study the supersymmetric GUTs with gravity mediated supersymmetry breaking in details. First, considering the dimension-six proton decay via heavy gauge boson exchange, we point out that we can probe the supersymmetric GUTs with GUT scale $M_{GUT}$ up to $1.778\times 10^{16}$ GeV at the Hyper-Kamiokande experiment. Second, for the supersymmetric GUTs with $M_{GUT} \ge 1.0\times 10^{16}$ GeV and $M_{GUT} \ge 1.2\times 10^{16}$ GeV, we show that the upper bounds on the universal gaugino mass are $7.2$ TeV and 3.5 TeV, respectively, and thus the corresponding upper bounds on gluino mass are 15 TeV and 8 TeV, respectively. Also, we shall study the masses for charginos, neutralinos, squarks, sleptons, and Higgs particles in details. In particular, the supersymmetric GUTs with $M_{GUT} \leq 1.2\times 10^{16}$ GeV can be probed at the Hyper-Kamiokande experiment, and the supersymmetric GUTs with $M_{GUT}\ge 1.2\times 10^{16}$ GeV can be probed at the future 100 TeV pp collider experiments such as the ${\rm FCC}_{\rm hh}$ and SppC via gluino searches. Thus, the supersymmetric GUTs with gravity mediation can be probed by the ${\rm FCC}_{\rm hh}$, SppC, and Hyper-Kamiokande experiments. In our previous study, we have shown that the supersymmetric GUTs with anomaly and gauge mediated supersymmetry breakings are well within the reaches of these experiments. Therefore, our proposal provides the concrete scientific goal for the ${\rm FCC}_{\rm hh}$, SppC, and Hyper-Kamiokande experiments: probing the supersymmetric GUTs.