Ultra-High-Energy Gamma-Ray Bubble around Microquasar V4641 Sgr
arXiv:2410.16117 · doi:10.1038/s41586-024-07995-9
Abstract
Microquasars are laboratories for the study of jets of relativistic particles produced by accretion onto a spinning black hole. Microquasars are near enough to allow detailed imaging of spatial features across the multiwavelength spectrum. The recent extension of the spatial morphology of a microquasar, SS 433, to TeV gamma rays \cite{abeysekara2018very} localizes the acceleration of electrons at shocks in the jet far from the black hole \cite{hess2024ss433}. Here we report TeV gamma-ray emission from another microquasar, V4641~Sgr, which reveals particle acceleration at similar distances from the black hole as SS~433. Additionally, the gamma-ray spectrum of V4641 is among the hardest TeV spectra observed from any known gamma-ray source and is detected up to 200 TeV. Gamma rays are produced by particles, either electrons or hadrons, of higher energies. Because electrons lose energy more quickly the higher their energy, such a spectrum either very strongly constrains the electron production mechanism or points to the acceleration of high-energy hadrons. This observation suggests that large-scale jets from microquasars could be more common than previously expected and that microquasars could be a significant source of Galactic cosmic rays. high energy gamma-rays also provide unique constraints on the acceleration mechanisms of extra-Galactic cosmic rays postulated to be produced by the supermassive black holes and relativistic jets of quasars. The distance to quasars limits imaging studies due to insufficient angular resolution of gamma-rays and due to attenuation of the highest energy gamma-rays by the extragalactic background light.
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Cited by in corpus (15)
- Precise measurements of the cosmic ray proton energy spectrum in the "knee'' region
- Quantifying jet-interstellar medium interactions in Cyg X-1: Insights from dual-frequency bow shock detection with MeerKAT
- Microquasar jet-cocoon systems as PeVatrons
- Galactic transient sources with the Cherenkov Telescope Array Observatory
- Detection of molecular clouds in the PeVatron candidate source LHAASO J03415258 by the Nobeyama 45-m radio telescope
- Large-scale radio bubbles around the black hole transient V4641 Sgr
- Microquasar remnants as hidden PeVatrons
- X-ray Binaries: a potential dominant contributor to the cosmic ray spectral knee structure
- Leptonic and hadronic models of high-energy nebula around V4641 Sgr
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- Supernova remnants in super bubbles as cosmic ray accelerators
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