Max Planck Institut für Physik (Werner-Heisenberg-Institut), Föhringer Ring 6, 80805 München, Germany.
Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai 400005, India.
Phys Rev Lett. 2019 Mar 8;122(9):091101. doi: 10.1103/PhysRevLett.122.091101.
Fast flavor conversions of supernova neutrinos, possible near the neutrinosphere, depends on an interesting interplay of collisions and neutrino oscillations. Contrary to naïve expectations, the rate of self-induced neutrino oscillations, due to neutrino-neutrino forward scattering, comfortably exceeds the rate of collisions even deep inside the supernova core. Consistently accounting for collisions and oscillations, we present the first calculations to show that collisions can create the conditions for fast flavor conversions of neutrinos, but oscillations can continue without significant damping thereafter. This may have interesting consequences for supernova explosions and the nature of its associated neutrino emission.
超新星中微子的快速味转换,可能发生在中微子球层附近,这取决于碰撞和中微子振荡之间有趣的相互作用。与天真的预期相反,由于中微子-中微子前向散射引起的自感中微子振荡速率,即使在超新星核心深处,也舒适地超过了碰撞速率。我们一致地考虑了碰撞和振荡,给出了第一个计算结果,表明碰撞可以为中微子的快速味转换创造条件,但此后振荡可以继续而不会有明显的阻尼。这可能对超新星爆炸及其相关中微子发射的性质产生有趣的影响。