Detection of a Molecular Cloud toward the Heartbeating Gamma-ray Source near the Microquasar SS 433

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Main Authors: Oka, Tomoharu, Ariyama, Ryo, Kotani, Tatsuya
Format: Preprint
Published: 2026
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author Oka, Tomoharu
Ariyama, Ryo
Kotani, Tatsuya
author_facet Oka, Tomoharu
Ariyama, Ryo
Kotani, Tatsuya
contents We report the detection of a molecular cloud, CO+40.05-2.40, positionally coincident with the "heartbeating" GeV source Fermi J1913+0515 at the northern boundary of the SS 433/W50 system. Millimeter and submillimeter spectroscopy with the Nobeyama 45 m telescope and the James Clerk Maxwell Telescope shows that the cloud has physical properties typical of quiescent dark clouds in the Galactic disk, with no evidence of shock heating or enhanced excitation. We examine possible high-energy emission mechanisms and find that the observed GeV luminosity cannot be accounted for by electron bremsstrahlung or hadronic interactions driven by relativistic particles originating from SS 433 under reasonable energetic assumptions. As an alternative, we propose that the gamma-rays may arise from a compact object embedded within the cloud and powered by Bondi-type accretion. In this framework, the reported heartbeat-like variability may reflect periodic modulation of the accretion flow by density waves induced by the precessing equatorial outflow of SS 433.
format Preprint
id arxiv_https___arxiv_org_abs_2603_21550
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Detection of a Molecular Cloud toward the Heartbeating Gamma-ray Source near the Microquasar SS 433
Oka, Tomoharu
Ariyama, Ryo
Kotani, Tatsuya
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
We report the detection of a molecular cloud, CO+40.05-2.40, positionally coincident with the "heartbeating" GeV source Fermi J1913+0515 at the northern boundary of the SS 433/W50 system. Millimeter and submillimeter spectroscopy with the Nobeyama 45 m telescope and the James Clerk Maxwell Telescope shows that the cloud has physical properties typical of quiescent dark clouds in the Galactic disk, with no evidence of shock heating or enhanced excitation. We examine possible high-energy emission mechanisms and find that the observed GeV luminosity cannot be accounted for by electron bremsstrahlung or hadronic interactions driven by relativistic particles originating from SS 433 under reasonable energetic assumptions. As an alternative, we propose that the gamma-rays may arise from a compact object embedded within the cloud and powered by Bondi-type accretion. In this framework, the reported heartbeat-like variability may reflect periodic modulation of the accretion flow by density waves induced by the precessing equatorial outflow of SS 433.
title Detection of a Molecular Cloud toward the Heartbeating Gamma-ray Source near the Microquasar SS 433
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
url https://arxiv.org/abs/2603.21550