English

HAWC Search for High-Mass Microquasars

High Energy Astrophysical Phenomena 2022-06-29 v2

Abstract

Microquasars with high-mass companion stars are promising very-high-energy (VHE; 0.1-100 TeV) gamma-ray emitters, but their behaviors above 10 TeV are poorly known. Using the High Altitude Water Cherenkov (HAWC) observatory, we search for excess gamma-ray emission coincident with the positions of known high-mass microquasars (HMMQs). No significant emission is observed for LS 5039, Cygnus X-1, Cygnus X-3, and SS 433 with 1,523 days of HAWC data. We set the most stringent limit above 10 TeV obtained to date on each individual source. Under the assumption that HMMQs produce gamma rays via a common mechanism, we have performed source-stacking searches, considering two different scenarios: I) gamma-ray luminosity is a fraction ϵγ\epsilon_\gamma of the microquasar jet luminosity, and II) very-high-energy gamma rays are produced by relativistic electrons up-scattering the radiation field of the companion star in a magnetic field BB. We obtain ϵγ<5.4×106\epsilon_\gamma < 5.4\times 10^{-6} for scenario I, which tightly constrains models that suggest observable high-energy neutrino emission by HMMQs. In the case of scenario II, the non-detection of VHE gamma rays yields a strong magnetic field, which challenges synchrotron radiation as the dominant mechanism of the microquasar emission between 10 keV and 10 MeV.

Keywords

Cite

@article{arxiv.2101.08945,
  title  = {HAWC Search for High-Mass Microquasars},
  author = {HAWC Collaboration and A. Albert and R. Alfaro and C. Alvarez and J. R. Angeles Camacho and J. C. Arteaga-Velazquez and K. P. Arunbabu and D. Avila Rojas and H. A. Ayala Solares and V. Baghmanyan and E. Belmont-Moreno and S. Y. BenZvi and C. Brisbois and K. S. Caballero-Mora and T. Capistran and A. Carraminana and S. Casanova and U. Cotti and J. Cotzomi and E. De la Fuente and C. de Leon and R. Diaz Hernandez and J. C. Diaz-Velez and B. L. Dingus and M. Durocher and M. A. DuVernois and R. W. Ellsworth and C. Espinoza and K. L. Fan and K. Fang and N. Fraija and A. Galvan-Gamez and J. A. Garcia-Gonzalez and F. Garfias and M. M. Gonzalez and J. A. Goodman and J. P. Harding and S. Hernandez and B. Hona and D. Huang and F. Hueyotl-Zahuantitla and P. Huntemeyer and A. Iriarte and A. Jardin-Blicq and V. Joshi and D. Kieda and A. Lara and J. Lee and W. H. Lee and H. Leon Vargas and J. T. Linnemann and A. L. Longinotti and G. Luis-Raya and J. Lundeen and K. Malone and O. Martinez and J. Martinez-Castro and J. A. Matthews and P. Miranda-Romagnoli and J. A. Morales-Soto and E. Moreno and M. Mostafa and A. Nayerhoda and L. Nellen and M. Newbold and M. U. Nisa and R. Noriega-Papaqui and L. Olivera-Nieto and N. Omodei and A. Peisker and Y. Perez Araujo and C. D. Rho and Y. J. Roh and D. Rosa-Gonzalez and F. Salesa Greus and A. Sandoval and M. Schneider and J. Serna-Franco and A. J. Smith and R. W. Springer and K. Tollefson and I. Torres and R. Torres-Escobedo and R. Turner and F. Urena-Mena and L. Villasenor and I. J. Watson and T. Weisgarber and E. Willox and H. Zhou},
  journal= {arXiv preprint arXiv:2101.08945},
  year   = {2022}
}

Comments

Accepted for publication in ApJL

R2 v1 2026-06-23T22:24:44.788Z