Neutrino Emission from Proton–Photon Jet Interactions in Microquasars

Microquasars are candidate sites for high-energy particle production within our galaxy. Because their distances and compact emission regions limit direct observational constraints, numerical simulations are useful for connecting jet dynamics with possible multi-messenger signatures. This work models neutrino production from relativistic magneto-hydrodynamic microquasar jets, focusing on the proton–photon (pγ) channel associated with interactions between accelerated protons and ambient photon fields. Proton–proton (pp) interactions are acknowledged as a possible process in dense environments, but they are not modeled in the present calculation. A ray-tracing procedure is applied to the hydrodynamic simulation output to produce synthetic neutrino images from a stationary observer’s perspective. Synthetic spectra and intensity maps are presented and compared with representative sensitivities of current and future neutrino detectors.

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Publication Details

Journal
Galaxies
Published
2026-09-14
DOI
https://doi.org/10.3390/galaxies14050084
Primary Topic
Astrophysics and Cosmic Phenomena
Type
article
Field-Weighted Citation Impact
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article

Neutrino Emission from Proton–Photon Jet Interactions in Microquasars

Theodoros Smponias
Galaxies
Astrophysics and Cosmic Phenomena
article

Neutrino Emission from Proton–Photon Jet Interactions in Microquasars

Theodoros Smponias
article en

Abstract

Microquasars are candidate sites for high-energy particle production within our galaxy. Because their distances and compact emission regions limit direct observational constraints, numerical simulations are useful for connecting jet dynamics with possible multi-messenger signatures. This work models neutrino production from relativistic magneto-hydrodynamic microquasar jets, focusing on the proton–photon (pγ) channel associated with interactions between accelerated protons and ambient photon fields. Proton–proton (pp) interactions are acknowledged as a possible process in dense environments, but they are not modeled in the present calculation. A ray-tracing procedure is applied to the hydrodynamic simulation output to produce synthetic neutrino images from a stationary observer’s perspective. Synthetic spectra and intensity maps are presented and compared with representative sensitivities of current and future neutrino detectors.

GalaxiesVol. 14(5)
Ionian University (GR)
Affordable and clean energy
Openalex Percentile: Top 12%
Astrophysics and Cosmic Phenomena
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