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Heavy axion-like particles (ALPs), with masses $m_a \gtrsim 100$ keV, coupled with photons, would be copiously produced in a supernova (SN) core via Primakoff process and photon coalescence.
1903
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1904
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1906
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1988
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G. Raffelt and D. Seckel, “Bounds on Exotic Particle Interactions from SN 1987a,” Phys. Rev. Lett. 60
1988
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A. Mezzacappa and S. W. Bruenn, “A numerical method for solving the neutrino Boltzmann equation coupled to spherically symmetric stellar core collapse,” Astrophys. J. 405
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J. Grifols, E. Masso and R. Toldra, “Gamma-rays from SN1987A due to pseudoscalar conversion,” Phys. Rev. Lett. 77
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G. G. Raffelt, “Stars as laboratories for fundamental physics : The astrophysics of neutrinos, axions, and other weakly interacting particles,” Chicago, USA: Univ. Pr. (1996) 664 p
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H. T. Janka, “Conditions for shock revival by neutrino heating in core collapse supernovae,” Astron. Astrophys. 368
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H. Dreiner, C. Hanhart, U. Langenfeld and D. R. Phillips, “Supernovae and light neutralinos: SN1987A bounds on supersymmetry revisited,” Phys. Rev. D 68
2003
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2004
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M. Liebendoerfer, O. E. B. Messer, A. Mezzacappa, S. W. Bruenn, C. Y. Cardall and F. K. Thielemann, “A Finite difference representation of neutrino radiation hydrodynamics for spherically symmetric general relativistic supernova simulations,” Astrophys. J. Suppl. 150
2004
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2004
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2012
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T. Fischer, G. Martínez-Pinedo, M. Hempel, and M. Liebendörfer, “Neutrino spectra evolution during protoneutron star deleptonization,” Phys. Rev. D85
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2005
Cited alongside, same era.
P. Svrcek and E. Witten, “Axions In String Theory,” JHEP 0606
2006
Cited alongside, same era.
2008
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G. G. Raffelt, “Astrophysical axion bounds,” Lect. Notes Phys. 741
2008
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2008
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2010
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2010
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2010
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2014
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2015
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2015
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2015
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M. Hempel, “Nucleon self-energies for supernova equations of state,” Phys. Rev. C 91
2015
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2016
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2017
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2017
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2017
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2018
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2018
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2018
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