High-energy Neutrino Predictions for T Coronae Borealis: Probing Particle Acceleration in Novae

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Autori principali: Sarmah, Prantik, Chakraborty, Sovan, Wang, Xilu
Natura: Preprint
Pubblicazione: 2025
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author Sarmah, Prantik
Chakraborty, Sovan
Wang, Xilu
author_facet Sarmah, Prantik
Chakraborty, Sovan
Wang, Xilu
contents The MAGIC detection of near-TeV gamma rays from the 2021 RS Oph ($2.45$ kpc) outburst has established recurrent novae as TeV particle accelerators. However, the origin of this emission (hadronic vs leptonic) remains unclear due to the lack of coincident neutrinos detected by IceCube. The upcoming outburst of the much closer T Coronae Borealis (T CrB, $\sim0.887$ kpc) offers a unique opportunity to detect these rare nova neutrinos. Here we present the first comparative analysis of the hadronic secondary fluxes expected from the upcoming T CrB outburst and evaluate their detectability across major observatories, considering two proton-acceleration mechanisms: (i) an external shock (ES) at $\sim10^{13}$ cm, and (ii) magnetic reconnection (MR), near the white dwarf surface at $\sim10^{9}$ cm. While the benchmark ES model predicts a gamma-ray flux detectable by current facilities, its corresponding neutrino flux largely remains undetectable. In contrast, the MR scenario generates a robust neutrino flux within the reach of IceCube and KM3NeT. Importantly, as the MR-produced gamma-rays are absorbed, the escaping MR neutrinos will arrive hours before any ES-origin signals. This distinct temporal separation can create a powerful phenomenological signature to disentangle the nova acceleration physics.
format Preprint
id arxiv_https___arxiv_org_abs_2512_22338
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle High-energy Neutrino Predictions for T Coronae Borealis: Probing Particle Acceleration in Novae
Sarmah, Prantik
Chakraborty, Sovan
Wang, Xilu
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
High Energy Physics - Phenomenology
The MAGIC detection of near-TeV gamma rays from the 2021 RS Oph ($2.45$ kpc) outburst has established recurrent novae as TeV particle accelerators. However, the origin of this emission (hadronic vs leptonic) remains unclear due to the lack of coincident neutrinos detected by IceCube. The upcoming outburst of the much closer T Coronae Borealis (T CrB, $\sim0.887$ kpc) offers a unique opportunity to detect these rare nova neutrinos. Here we present the first comparative analysis of the hadronic secondary fluxes expected from the upcoming T CrB outburst and evaluate their detectability across major observatories, considering two proton-acceleration mechanisms: (i) an external shock (ES) at $\sim10^{13}$ cm, and (ii) magnetic reconnection (MR), near the white dwarf surface at $\sim10^{9}$ cm. While the benchmark ES model predicts a gamma-ray flux detectable by current facilities, its corresponding neutrino flux largely remains undetectable. In contrast, the MR scenario generates a robust neutrino flux within the reach of IceCube and KM3NeT. Importantly, as the MR-produced gamma-rays are absorbed, the escaping MR neutrinos will arrive hours before any ES-origin signals. This distinct temporal separation can create a powerful phenomenological signature to disentangle the nova acceleration physics.
title High-energy Neutrino Predictions for T Coronae Borealis: Probing Particle Acceleration in Novae
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2512.22338