arXiv · 2012.11632
Supernova Constraints on Dark Flavored Sectors
Abstract
Proto-neutron stars forming a few seconds after core-collapse supernovae are hot and dense environments where hyperons can be efficiently produced by weak processes. By making use of various state-of-the-art supernova simulations combined with the proper extensions of the equations of state including $\Lambda$ hyperons, we calculate the cooling of the star induced by the emission of dark bosons $X^0$ through the decay $\Lambda\to n X^0$. Comparing this novel energy-loss process to the neutrino cooling of SN 1987A allows us to set stringent constraints on massless dark photons and axions with flavor-violating couplings to quarks. We find that this new supernova bound can be orders of magnitude stronger than other limits in dark-sector models.
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Jorge Martin Camalich, Jorge Terol-Calvo, Laura Tolos, Robert Ziegler. 2020-12-21. Supernova Constraints on Dark Flavored Sectors. https://doi.org/10.1103/physrevd.103.l121301
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