AI 中文总结
研究未来轻子对撞机和中微子望远镜中带电希格斯玻色子的发现潜力,通过共振中微子散射过程利用中微子望远镜事件,用优化策略研究轻子对撞机信号,比较两者在参数空间的发现潜力,发现各自优势。
AI 中文摘要
我们在具有通用汤川耦合的两个简化基准情景下,研究未来轻子对撞机和中微子望远镜中带电希格斯玻色子的发现潜力。证明中微子望远镜中的μ子径迹和级联事件可通过共振中微子散射过程用于搜索或约束带电希格斯玻色子,并比较不同天体物理中微子通量模型下的灵敏度。研究中微子望远镜探测器体积对带电希格斯玻色子发现潜力的影响。使用优化重建策略研究未来轻子对撞机在不同运动学区域的带电希格斯玻色子信号。比较两种实验方法在相关参数空间的发现潜力,发现未来轻子对撞机在大多数参数空间通常具有更好的灵敏度,而具有非常大探测器体积的中微子望远镜在带电希格斯玻色子的重质量区域可提供有竞争力的互补灵敏度。
英文摘要
We investigate the discovery potential of the charged Higgs boson at future lepton colliders and neutrino telescopes within two simplified benchmark scenarios with universal Yukawa couplings. We demonstrate that both the muon-track and cascade events at neutrino telescopes can be exploited to search for or constrain the charged Higgs boson through resonant neutrino scattering process, and we compare the sensitivities obtained under different astrophysical neutrino flux models. We study the effect of the detector volume of neutrino telescopes on the discovery potential of the charged Higgs boson. We study the signal of charged Higgs boson at future lepton colliders over different kinematic regimes using optimized reconstruction strategies. We compare the discovery potential of the two experimental approaches over the relevant parameter space and find that future lepton colliders generally provide better sensitivity in most of the parameter space, while neutrino telescopes with very large detector volume can offer competitive and complementary sensitivity in the heavy-mass region of the charged Higgs boson.
Comments18 pages, 19 figures