Detecting Supernova Axions with IAXO

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Hauptverfasser: Carenza, P., Pascual, J. A. García, Giannotti, M., Irastorza, I. G., Kaltschmidt, M., Lella, A., Lindner, A., Lucente, G., Mirizzi, A., Puyuelo, M. J., Schiffer, T.
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Veröffentlicht: 2025
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author Carenza, P.
Pascual, J. A. García
Giannotti, M.
Irastorza, I. G.
Kaltschmidt, M.
Lella, A.
Lindner, A.
Lucente, G.
Mirizzi, A.
Puyuelo, M. J.
Schiffer, T.
author_facet Carenza, P.
Pascual, J. A. García
Giannotti, M.
Irastorza, I. G.
Kaltschmidt, M.
Lella, A.
Lindner, A.
Lucente, G.
Mirizzi, A.
Puyuelo, M. J.
Schiffer, T.
contents We investigate the potential of IAXO and its intermediate version, BabyIAXO, to detect axions produced in core-collapse supernovae (SNe). Our study demonstrates that these experiments have realistic chances of identifying SN axions, offering crucial insights into both axion physics and SN dynamics. IAXO's sensitivity to SN axions allows for the exploration of regions of the axion parameter space inaccessible through solar observations. In addition, in the event of a nearby SN, $d \sim O(100)$ pc, and sufficiently large axion couplings, $g_{a γ} \gtrsim 10^{-11} GeV^{-1}$, IAXO could have a chance to significantly advance our understanding of axion production in nuclear matter and provide valuable information about the physics of SNe, such as pion abundance, the equation of state, and other nuclear processes occurring in extreme environments.
format Preprint
id arxiv_https___arxiv_org_abs_2502_19476
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Detecting Supernova Axions with IAXO
Carenza, P.
Pascual, J. A. García
Giannotti, M.
Irastorza, I. G.
Kaltschmidt, M.
Lella, A.
Lindner, A.
Lucente, G.
Mirizzi, A.
Puyuelo, M. J.
Schiffer, T.
High Energy Physics - Phenomenology
High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
High Energy Physics - Experiment
We investigate the potential of IAXO and its intermediate version, BabyIAXO, to detect axions produced in core-collapse supernovae (SNe). Our study demonstrates that these experiments have realistic chances of identifying SN axions, offering crucial insights into both axion physics and SN dynamics. IAXO's sensitivity to SN axions allows for the exploration of regions of the axion parameter space inaccessible through solar observations. In addition, in the event of a nearby SN, $d \sim O(100)$ pc, and sufficiently large axion couplings, $g_{a γ} \gtrsim 10^{-11} GeV^{-1}$, IAXO could have a chance to significantly advance our understanding of axion production in nuclear matter and provide valuable information about the physics of SNe, such as pion abundance, the equation of state, and other nuclear processes occurring in extreme environments.
title Detecting Supernova Axions with IAXO
topic High Energy Physics - Phenomenology
High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
High Energy Physics - Experiment
url https://arxiv.org/abs/2502.19476