论文标题

通过$ z^\ prime $介导的中微子加热来激发伽玛射线爆发

Energizing gamma ray bursts via $Z^\prime$ mediated neutrino heating

论文作者

Poddar, Tanmay Kumar, Goswami, Srubabati, Mishra, Arvind Kumar

论文摘要

中微子$(ν\Overlineν\ rightArrow e^+e^ - )$ an灭的对猛烈的恒星爆炸(例如伽玛射线爆发(GRB))。通过在牛顿时空的时空修饰背景时空,可以进一步增强这种中微子加热机制中的能量。但是,在牛顿背景或schwarzschild和hartle-thorne背景中,无法获得最大GRB Energy $(\ SIM 10^{52}〜\ rm {erg})$。另一方面,将修饰的重力理论或典型场作为背景几何形状,可以达到最大的GRB能量。在本文中,我们考虑通过额外的$ u(1)_ {\ rm {b-l}} $量规组扩展标准模型,并通过中微子对消灭过程扩大能量沉积,包括由$ z^\ prime $ gripe $ grauge量规介导的贡献。从观察到的GRB的能量中,我们获得了$ U(1)_ {\ rm {b-l}} $ gauge在不同背景空间中耦合的约束。我们发现,在修饰的重力理论和典型背景中,量规耦合的边界比来自小规模玻色子质量极限的中微子 - 电子散射实验的界限要强。未来的GRB观察以更好的准确性可以进一步增强这些界限。

The pair annihilation of neutrinos $(ν\overlineν\rightarrow e^+e^-)$ can energize violent stellar explosions such as gamma ray bursts (GRBs). The energy in this neutrino heating mechanism can be further enhanced by modifying the background spacetime over that of Newtonian spacetime. However, one cannot attain the maximum GRB energy $(\sim 10^{52}~\rm{erg})$ in either the Newtonian background or Schwarzschild and Hartle-Thorne background. On the other hand, using modified gravity theories or the Quintessence field as background geometries, the maximum GRB energy can be reached. In this paper, we consider extending the standard model by an extra $U(1)_{\rm{B-L}}$ gauge group and augmenting the energy deposition by neutrino pair annihilation process including contributions mediated by the $Z^\prime$ gauge boson belonging to this model. From the observed energy of GRB, we obtain constraints on $U(1)_{\rm{B-L}}$ gauge coupling in different background spacetimes. We find that the bounds on gauge coupling in modified gravity theories and quintessence background are stronger than those coming from the neutrino-electron scattering experiments in the limit of small gauge boson masses. Future GRB observations with better accuracy can further strengthen these bounds.

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