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Testing the Lense-Thirring Precession Origin of the QPO in Swift J1727.8-1613

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arxiv 2506.18857 v2 pith:XVMZASSJ submitted 2025-06-23 astro-ph.HE hep-ph

Testing the Lense-Thirring Precession Origin of the QPO in Swift J1727.8$-$1613

classification astro-ph.HE hep-ph
keywords innermodelpowerprecessionaccretionblackdiscduring
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We present a comprehensive spectral and timing analysis of the newly discovered black hole transient Swift J1727.8$-$1613, based on broadband (2$-$150 keV) observations from $Insight$-HXMT during its 2023 outburst. We use the flexible, energy-conserving SSsed model to model both the outer disc and inner, complex Comptonisation, using the expected disc emissivity to constrain the corona radius, $r_{cor}$. This decreases from 45 $R_{\rm g}$ to 9 $R_{\rm g}$ during the transition from the hard to hard intermediate and then soft intermediate state. We plot $r_{cor}$ versus the centroid frequency of the strong quasi-periodic oscillations (QPOs; $\nu_{\rm c}$) seen in these data to test the inner hot flow Lense-Thirring (LT) precession model. The overall slope of the observed trend is in strong agreement with the predictions of LT precession, despite the complexities of accretion behavior, though there is an offset in absolute value which may indicate that the system parameters are still not well determined. The inner radius of the hot flow is consistent with a constant value throughout most of the outburst, indicating that changes in the jet (e.g. the discrete ejections) do not strongly affect the radiated power. Either the jet kinetic power is not a large fraction of the accretion power or the jet is instead mostly powered by the spin energy of the black hole.

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Cited by 2 Pith papers

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

  1. Discovery of a quasi-periodic oscillation non-harmonically related to the Type-C QPO in the hard intermedidate state of MAXI J1820+070

    astro-ph.HE 2026-06 unverdicted novelty 7.0

    Detection of a non-harmonic QPO precursor to Type-B in the HIMS of MAXI J1820+070 using NICER timing data.

  2. Energy-dependent Optical/Near-infrared and X-ray Correlations in Swift J1727.8-1613

    astro-ph.HE 2026-07 conditional novelty 6.0

    For Swift J1727.8–1613, the optical–X-ray correlation flips sign with X-ray energy, and the QPO lag is flat (~60–80 ms) from 2 to 150 keV.