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Collective neutrino flavor conversion: Recent developments

机译:集体中微子风味转换:最新进展

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摘要

Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe is dominated by neutrino–neutrino refraction, often spawning “self-induced flavor conversion,” i.e., shuffling of flavor among momentum modes. This effect is driven by collective run-away modes of the coupled “flavor oscillators” and can spontaneously break the initial symmetries such as axial symmetry, homogeneity, isotropy, and even stationarity. Moreover, the growth rates of unstable modes can be of the order of the neutrino–neutrino interaction energy instead of the much smaller vacuum oscillation frequency: self-induced flavor conversion does not always require neutrino masses. We illustrate these newly found phenomena in terms of simple toy models. What happens in realistic astrophysical settings is up to speculation at present.
机译:中子坍塌超新星,中子星合并或早期宇宙中的中微子风味演化主要受中微子-中微子折射的影响,通常会产生“自感应的风味转换”,即动量模式之间的风味混排。这种效应是由耦合的“风味振荡器”的共同失控模式驱动的,并且可以自发破坏初始对称性,例如轴向对称性,同质性,各向同性,甚至平稳性。此外,不稳定模式的增长率可以是中微子-中微子相互作用能的数量级,而不是很小的真空振荡频率:自诱导的风味转换并不总是需要中微子质量。我们用简单的玩具模型来说明这些新发现的现象。目前,在现实的天体物理环境中发生的事情取决于猜测。

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