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The cumulative emission of Axion-Like Particles (ALPs) from all past core-collapse supernovae (SNe) would lead to a diffuse flux with energies ${\mathcal O}(50)$ MeV.
1901
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1911
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1911
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1984
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M. Srednicki, “Axion Couplings to Matter. 1. CP Conserving Parts,” Nucl. Phys. B
1985
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G. G. Raffelt, “ASTROPHYSICAL AXION BOUNDS DIMINISHED BY SCREENING EFFECTS,” Phys. Rev
1986
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M. S. Turner, “Axions from SN 1987a,” Phys. Rev. Lett
1988
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G. Raffelt and D. Seckel, “Bounds on Exotic Particle Interactions from SN 1987a,” Phys. Rev. Lett
1988
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G. Raffelt and L. Stodolsky, “Mixing of the Photon with Low Mass Particles,” Phys. Rev
1988
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A. Burrows, M. S. Turner, and R. P. Brinkmann, “Axions and SN 1987a,” Phys. Rev
1989
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M. Carena and R. D. Peccei, “The Effective Lagrangian for Axion Emission From SN1987A,” Phys. Rev
1989
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A. Burrows, M. T. Ressell, and M. S. Turner, “Axions and SN1987A: Axion trapping,” Phys. Rev
1990
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G. G. Raffelt, “Astrophysical methods to constrain axions and other novel particle phenomena,” Phys. Rept
1990
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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
1993
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M. Altmann, F. von Feilitzsch, C. Hagner, L. Oberauer, Y. Declais, and E. Kajfasz, “Search for the electron positron decay of axions and axion - like particles at a nuclear power reactor at Bugey,” Z. Phys
1995
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G. Raffelt, Stars as laboratories for fundamental physics: The astrophysics of neutrinos, axions, and other weakly interacting particles · 1996
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J. A. Grifols, E. Masso, and R. Toldra, “Gamma-rays from SN1987A due to pseudoscalar conversion,” Phys. Rev. Lett
1996
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J. W. Brockway, E. D. Carlson, and G. G. Raffelt, “SN1987A gamma-ray limits on the conversion of pseudoscalars,” Phys. Lett
1996
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W. Keil, H.-T. Janka, D. N. Schramm, G. Sigl, M. S. Turner, and J. R. Ellis, “A Fresh look at axions and SN-1987A,” Phys. Rev
1997
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A. Kopf and G. Raffelt, “Photon dispersion in a supernova core,” Phys. Rev. D
1998
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S. C. Kappadath, “COMPTEL measurements of the Cosmic Diffuse Gamma-Ray Spectrum from 800 keV to 30 MeV PhD thesis (U. of New Hampshire, 1998).”
1998
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G. Weidenspointner, M. Varendorff, S. C. Kappadath, K. Bennett, H. Bloemen, R. Diehl, W. Hermsen, G. G. Lichti, J. Ryan, and V. Schönfelder, “The cosmic diffuse gamma-ray background measured with COMPTEL,” AIP Conference Proceedings
2000
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J. G. Stacy, S. C. Kappadath, W. Collmar, V. Schoenfelder, H. Steinle, A. Strong, H. Bloemen, W. Hermsen, J. M. Ryan, and O. R. Williams, “Limits on MeV emission from active galaxies measured with COMPTEL,” AIP Conference Proceedings
2000
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C. Hanhart, D. R. Phillips, and S. Reddy, “Neutrino and axion emissivities of neutron stars from nucleon-nucleon scattering data,” Phys. Lett
2001
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2002
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2013
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J. Jaeckel and J. Redondo, “An antenna for directional detection of WISPy dark matter,” JCAP
2013
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2014
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2014
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2003
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J. F. Beacom and M. R. Vagins, “GADZOOKS! Anti-neutrino spectroscopy with large water Cherenkov detectors,” Phys. Rev. Lett
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
2004
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2004
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2005
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2006
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G. G. Raffelt, “Axions: Motivation, limits and searches,” J. Phys
2007
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G. G. Raffelt, “Astrophysical axion bounds,” Lect. Notes Phys
2008
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2014
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2018
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J. Jaeckel and L. J. Thormaehlen, “Distinguishing Axion Models with IAXO,” JCAP
2019
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2020
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2020
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