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Multi-wavelength Emission from Galactic Jets: the Case of the Microquasar SS433

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arxiv 1911.00013 v2 pith:PWQIIHR6 submitted 2019-10-31 astro-ph.HE astro-ph.GA

Multi-wavelength Emission from Galactic Jets: the Case of the Microquasar SS433

classification astro-ph.HE astro-ph.GA
keywords jetsss433accelerationdataemissionmulti-wavelengthparticledifferent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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SS433 is a Galactic microquasar with powerful jets, where very-high-energy particles are produced. We study particle acceleration in the jets of SS433 in the light of the recent multi-wavelength data from radio to TeV gamma ray. We first present a general framework for the particle acceleration, cooling, and transport in relativistic jets. We then apply this to two X-ray knots in the jets of SS433, focusing on leptonic emission. Our detailed treatment of particle transport and evolution produces substantially different predictions from previous papers. For both regions, our model can account for the multi-wavelength data except for the GeV data. This suggests that GeV emission is mostly from different regions and/or mechanisms. We find that the acceleration process should be efficient, which could be realized by diffusive shock acceleration close to the Bohm limit. Provided that protons are accelerated at the same efficiency as electrons, our results imply that SS433 is a PeVatron, i.e., can accelerate protons beyond a PeV. Future hard X-ray and MeV gamma-ray observations can critically test our models by detecting the spectral turnover or cutoff.

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  1. PeV particle acceleration and non-thermal emission in the `minimalist' model of the extended jets in W50/SS433

    astro-ph.GA 2025-09 conditional novelty 6.0

    A model of SS433/W50's extended jets with diffusive shock acceleration reproduces X-ray spectra, gamma-ray emission, and >20% X-ray polarization, with >10% of jet power going into PeV protons.