Multiwavelength Observations of Swift J1753.5-0127
arXiv:1311.0031 · doi:10.1088/0004-637X/780/1/48
Abstract
We present contemporaneous X-ray, ultraviolet, optical and near-infrared observations of the black hole binary system, Swift J1753.5-0127, acquired in 2012 October. The UV observations, obtained with the Cosmic Origins Spectrograph on the Hubble Space Telescope, are the first UV spectra of this system. The dereddened UV spectrum is characterized by a smooth, blue continuum and broad emission lines of CIV and HeII. The system was stable in the UV to <10% during our observations. We estimated the interstellar reddening by fitting the 2175 A absorption feature and fit the interstellar absorption profile of Ly to directly measure the neutral hydrogen column density along the line of sight. By comparing the UV continuum flux to steady-state thin accretion disk models, we determined upper limits on the distance to the system as a function of black hole mass. The continuum is well fit with disk models dominated by viscous heating rather than irradiation. The broadband spectral energy distribution shows the system has declined at all wavelengths since previous broadband observations in 2005 and 2007. If we assume that the UV emission is dominated by the accretion disk the inner radius of the disk must be truncated at radii above the ISCO to be consistent with the X-ray flux, requiring significant mass loss from outflows and/or energy loss via advection into the black hole to maintain energy balance.
To appear in the ApJ
References in corpus (9)
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- Bright mini-outburst ends the 12-year long activity of the black hole candidate Swift J1753.5-0127
- Accretion Flow Properties of Swift J1753.5-0127 during its 2005 outburst
- A low-luminosity soft state in the short period black hole X-ray binary Swift J1753.5-0127
- Expanding hot flow in the black hole binary SWIFT J1753.5-0127: evidence from optical timing
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- WISE Detection of the Galactic Low-Mass X-Ray Binaries
- Disk-Jet quenching of the Galactic Black Hole Swift J1753.5-0127
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- Optical and Near-Infrared Spectroscopy of the Black Hole Swift J1753.5-0127
- The Curious Case of Swift J1753.5-0127: A Black Hole Low-mass X-ray Binary Analogue to Z Cam Type Dwarf Novae
- Fast X-ray/IR observations of the black hole transient Swift~J1753.5--0127: from an IR lead to a very long jet lag
- The origin of UV/optical emission in the black hole low-mass X-ray binary Swift J1753.5-0127
- Long term variability of Swift J1753.5-0127]{Long term variability of Swift J1753.5-0127: X-ray spectral-temporal correlations during state transitions
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- Ultraviolet spectroscopy of the black hole X-ray binary MAXI J1820+070 across a state transition
- Long-Term Monitoring of the Black Hole Candidate Swift J1753.5-0127 with INTEGRAL/SPI