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超新星中微子流自诱导味转换的轴对称破缺。

Axial symmetry breaking in self-induced flavor conversionof supernova neutrino fluxes.

机构信息

Max-Planck-Institut für Physik (Werner-Heisenberg-Institut), Föhringer Ring 6, 80805 München, Germany.

出版信息

Phys Rev Lett. 2013 Aug 30;111(9):091101. doi: 10.1103/PhysRevLett.111.091101. Epub 2013 Aug 28.

Abstract

Neutrino-neutrino refraction causes self-induced flavor conversion in dense neutrino fluxes. For the first time, we include the azimuth angle of neutrino propagation as an explicit variable and find a new generic multi-azimuth-angle instability which, for simple spectra, occurs in the normal neutrino mass hierarchy. Matter suppression of this instability in supernovae requires larger densities than the traditional bimodal case. The new instability shows explicitly that solutions of the equations for collective flavor oscillations need not inherit the symmetries of initial or boundary conditions. This change of paradigm requires reconsideration of numerous results in this field.

摘要

中微子-中微子折射导致密集中微子流中的自感味道转换。我们首次将中微子传播的方位角作为显式变量包含在内,并发现了一种新的通用多方位角不稳定性,对于简单的能谱,这种不稳定性出现在正常中微子质量顺序中。在超新星中,这种不稳定性的物质抑制需要比传统双模态情况更大的密度。这种新的不稳定性明确表明,集体味道振荡方程的解不一定继承初始或边界条件的对称性。这种范式的改变需要重新考虑该领域的许多结果。

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