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Joint Radiative and Kinematic Modelling of X-ray Binary Ejecta: Energy Estimate and Reverse Shock Detection

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arxiv 2503.10804 v2 pith:BX4HLVCB submitted 2025-03-13 astro-ph.HE

Joint Radiative and Kinematic Modelling of X-ray Binary Ejecta: Energy Estimate and Reverse Shock Detection

classification astro-ph.HE
keywords ejectax-raybinaryenergyjointmodellingavailabledegeneracy
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Black hole X-ray binaries in outburst launch discrete, large-scale jet ejections which can propagate to parsec scales. The kinematics of these ejecta appear to be well described by relativistic blast wave models original devised for gamma-ray burst afterglows. In previous kinematic-only modelling, a crucial degeneracy prevented the initial ejecta energy and the interstellar medium density from being accurately determined. In this work, we present the first joint Bayesian modelling of the radiation and kinematics of a large-scale jet ejection from the X-ray binary MAXI J1535-571. We demonstrate that a reverse shock powers the bright, early ejecta emission. The joint model breaks the energetic degeneracy, and we find the ejecta has an initial energy of $E_{0} \sim 3 \times 10^{43} \, {\rm erg}$, and propagates into a low density interstellar medium of $n_{\rm ism} \sim 4 \times 10^{-5} \, {\rm cm^{-3}}$. The ejecta is consistent with being launched perpendicular to the disc and could be powered by an efficient conversion of available accretion power alone. This work lays the foundation for future parameter estimation studies using all available data of X-ray binary jet ejecta.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Relativistic precessing jets powered by an accreting neutron star

    astro-ph.HE 2025-09 conditional novelty 7.0

    Cir X-1 is the first neutron star X-ray binary known to have large, moving relativistic jets, whose direction changed by at least 110 degrees over 25 years.

  2. A cooler look at the environment of Cygnus X-1: Searching for dynamical interactions within cold molecular gas

    astro-ph.HE 2026-07 conditional novelty 6.0

    CO maps of Cygnus X-1 reveal a spider-like molecular structure whose kinematics favor stellar-wind-driven feedback further sculpted by the binary's relativistic jets.

  3. The link between obscured accretion and mildly relativistic precessing jets

    astro-ph.HE 2026-06 unverdicted novelty 4.0

    Observational evidence links obscured super-Eddington accretion to slower precessing jets in stellar-mass compact object systems, contrasting with fixed fast jets in low-density environments.