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In this paper, we show the equivalency between the existence of fast neutrino flavor instability and that of neutrino flavor lepton number (NFLN) crossings, which indicates that an NFLN angular distribution takes both signs.
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M. Delfan Azari, S. Yamada, T. Morinaga, W. Iwakami, H. Okawa, H. Nagakura, and K. Sumiyoshi, Linear analysis of fast-pairwise collective neutrino oscillations in core-collapse supernovae based on the results of Boltzmann simulations, Physical Review D 99
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H. Nagakura, T. Morinaga, C. Kato, and S. Yamada, Fast-pairwise Collective Neutrino Oscillations Associated with Asymmetric Neutrino Emissions in Core-collapse Supernovae, The Astrophysical Journal 886
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S. Bhattacharyya and B. Dasgupta, Late-time behavior of fast neutrino oscillations, Physical Review D 102
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M. Delfan Azari, S. Yamada, T. Morinaga, H. Nagakura, S. Furusawa, A. Harada, H. Okawa, W. Iwakami, and K. Sumiyoshi, Fast collective neutrino oscillations inside the neutrino sphere in core-collapse supernovae, Physical Review D 101
2020
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R. Glas, H.-T. Janka, F. Capozzi, M. Sen, B. Dasgupta, A. Mirizzi, and G. Sigl, Fast neutrino flavor instability in the neutron-star convection layer of three-dimensional supernova models, Physical Review D 101
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T. Morinaga, H. Nagakura, C. Kato, and S. Yamada, Fast neutrino-flavor conversion in the preshock region of core-collapse supernovae, Physical Review Research 2
2020
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A. Kartavtsev, Accounting for the Heisenberg and Pauli principles in the kinetic approach to neutrino oscillations, Journal of High Energy Physics 2020
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T. Morinaga and S. Yamada, Spatiotemporal linear instability analysis for arbitrary dispersion relations on the Lefschetz thimble in multidimensional spacetime, Physical Review Research 2
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2021
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2021
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