论文标题

uhe中微子遇到紧凑型恒星的衰减和非折叠磁场

UHE neutrinos encountering decaying and non-decaying magnetic fields of compact stars

论文作者

Chundawat, Neetu Raj Singh, Mandal, Arindam, Sarkar, Trisha

论文摘要

在存在外部磁场的情况下,中微子自旋风味进料的现象是中微子磁矩的影响,它与电子相互作用的标准模型之外的物理合并。超高能量中微子是从宇宙中的许多来源产生的,包括高能的天体物理物体,例如活跃的银河核,大黄油或超质量黑洞。当如此高能量中微子通过任何紧凑的恒星物体(如中子星或白矮星)时,由于这些紧凑的物体提供的过高的磁场,它们的通量可以显着降低。对于狄拉克中微子,由于中微子转化为无菌性同类,因此发生了这种现象。在这项工作中,我们认为具有空间变化的磁场的中子恒星可能会随着时间而衰减。我们发现,对于非销售磁场,高能量狄拉克中微子的通量在穿过中子恒星后将几乎一半。在中子之星内的MUON的存在下,$ \ sim 10 \%$进一步将通量进一步覆盖。对于衰减的磁场,与时间静态磁场相比,减少通量减小了$ \ sim 5 \%$。在白色矮人的情况下,与中子恒星相比,通量的耗竭要小。

The phenomena of neutrino spin flavour precession in the presence of an extraneous magnetic field is a repercussion of neutrino magnetic moment which is consociated with the physics beyond the standard model of electroweak interactions. Ultra high energy neutrinos are spawned from a number of sources in the universe including the highly energetic astrophysical objects such as active galactic nuclei, blazar or supermassive black holes. When such high energy neutrinos pass through any compact stellar objects like neutron stars or white dwarfs, their flux can significantly reduce due to the exorbitant magnetic field provided by these compact objects. For Dirac neutrinos, such phenomena occur due to the conversion of neutrinos to their sterile counterparts. In this work, we consider a neutron star possessing a spatially varying magnetic field which may or may not decay with time. We find that, for the non-decaying magnetic field, the flux of high energy Dirac neutrinos becomes nearly half after passing through the neutron star. The flux is further enfeebled by $\sim 10\%$ in the presence of muons inside the neutron star. For decaying magnetic field, the flux reduction is abated by $\sim 5\%$ as compared to the temporally static magnetic field. In the case of a white dwarf, the depletion of flux is lesser as compared to the neutron stars.

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