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New spectral state of supercritical accretion flow with comptonizing outflow

  • Tomohisa Kawashima
  • , Ken Ohsuga
  • , Shin Mineshige
  • , Dominikus Heinzeller
  • , Hideaki Takabe
  • , Ryoji Matsumoto
  • Chiba University
  • Osaka University
  • National Institutes of Natural Sciences - National Astronomical Observatory of Japan
  • RIKEN
  • Kyoto University

Research output: Contribution to journalArticlepeer-review

42 Scopus citations

Abstract

Supercritical accretion flows inevitably produce radiation-pressure driven outflows, which Compton up-scatter soft photons from the underlying accretion flow, thereby making hard emission. We performed two-dimensional radiation hydrodynamic simulations of supercritical accretion flows and outflows, while incorporating such Compton scattering effects, and demonstrated that there appears a new hard spectral state at higher photon luminosities than that of the slim-disk state. In this state, as the photon luminosity increases, the photon index decreases and the fraction of the hard emission increases. The Compton y-parameter is on the order of unity (and thus the photon index will be ∼2) when the apparent photon luminosity is ∼30 LE (with LE being the Eddington luminosity) for nearly face-on sources. This explains the observed spectral hardening of the ULX NGC 1313 X-2 in its brightening phase, and thus supports the model of supercritical accretion onto stellar-mass black holes in this ULX.

Original languageEnglish
Pages (from-to)769-776
Number of pages8
JournalPublications of the Astronomical Society of Japan
Volume61
Issue number4
DOIs
StatePublished - 2009
Externally publishedYes

Keywords

  • Accretion: accretion disks
  • Black hole physics
  • Hydrodynamics
  • Radiative transfer

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