Abstract

view Abstract Citations (61) References (58) Co-Reads Similar Papers Volume Content Graphics Metrics Export Citation NASA/ADS X-Ray, Optical, and Infrared Luminosity Correlations in Radio-quiet Quasars Kriss, Gerard A. Abstract For a sample of 88 radio-quiet quasars that includes 15 X-ray upper limits, I find that the X-ray and IR luminosities follow a significantly nonlinear relation (L_2keV_ ~ L^0.73^_1 micron_) that is consistent with that found for the X-ray and optical luminosities. The redshift dependence is weak and may be nonexistent. The shape of the optical through infrared continuum varies only slightly with luminosity. The most significant change is the lack of a strong ultraviolet bump in low luminosity objects with L_1 micron_ < 10^30^ ergs s^-1^ Hz^-1^. More luminous quasars have significantly stronger bumps, but above 10^30^ ergs s^-1^ Hz^-1^ the strength of the bump does not correlate with luminosity. The relatively constant shape of the infrared through optical continuum implies that a systematic change in the X-ray continuum of quasars with increasing luminosity produces the nonlinear relation between the X-ray luminosity and the optical and IR luminosities. Either the overall normalization of the X-ray continuum relative to the optical and IR must decrease, or the X-ray continuum must flatten with increasing luminosity, or the strength of a soft X-ray excess must decrease with increasing luminosity. Without detailed knowledge of the X-ray and infrared spectra as a function of luminosity, it is difficult to place significant constraints on emission mechanisms. Publication: The Astrophysical Journal Pub Date: January 1988 DOI: 10.1086/165940 Bibcode: 1988ApJ...324..809K Keywords: Infrared Spectra; Luminosity; Quasars; Visible Spectrum; X Ray Spectra; Accretion Disks; Black Holes (Astronomy); Continuous Spectra; Correlation; Radio Spectra; Red Shift; Astrophysics; INFRARED: SOURCES; QUASARS; RADIATION MECHANISMS; X-RAYS: SOURCES full text sources ADS | data products SIMBAD (85) NED (84)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.