arXiv:2312.06556·v2·High Energy Astrophysical Phenomena
Energy Dependence of Flavor Instabilities Stemming from Crossings in the Neutrino Flavor Lepton Number Angular Distribution
Pedro Dedin Neto🇩🇰 · Irene Tamborra🇩🇰 · Shashank Shalgar🇩🇰
Abstract
In core-collapse supernovae and neutron star mergers, the neutrino density is so large that neutrino-neutrino refraction can lead to flavor conversion, if a zero-crossing is present in the neutrino flavor lepton number (FLN) angular distribution and the neutrino self-interaction strength represents the characteristic timescale of the system. It has been empirically realized that the vacuum frequency affects the development of flavor conversion in the presence of zero-crossing even if . Focusing on a homogeneous and axially symmetric neutrino gas, we explore the role of in the onset of flavor instabilities. We find that a non-zero vacuum frequency can be responsible for inducing flavor instabilities even when the neutrino self-interaction strength is much larger than the vacuum frequency. Moreover, mapping a neutrino ensemble with into an effective system with , we find that a system with no FLN zero-crossing can effectively develop one for becoming unstable.
Comments: 13 pages, including 8 figures and 2 appendices. Sec. IV expanded, new Fig. 2