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A catalog of optical to X-ray spectral energy distributions of z~2 quasars observed with Swift. I: First results

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arxiv 1702.05444 v1 pith:YEWFNZPF submitted 2017-02-17 astro-ph.GA

classification astro-ph.GA
keywords quasarsx-rayopticalswiftalphaanalysisdetecteddistributions
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We present the Swift optical to X-ray spectral energy distributions (SEDs) of 44 quasars at redshifts z~2 observed by Swift, part of a larger program to establish and characterize the optical through X-ray SEDs of moderate-redshift quasars. Here we outline our analysis approach and present preliminary analysis and results for the first third of the full quasar sample. Not all quasars in the sample are detected in X-rays; all of the X-ray detected objects so far are radio loud. As expected for radio loud objects, they are X-ray bright relative to radio-quiet quasars of comparable optical luminosities, with an average alpha_ox = 1.39 +/- 0.03 (where alpha_ox is the power-law slope connecting the monochromatic flux at 2500 Ang and at 2 keV), and display hard X-ray spectra. We find integrated 3000 Ang - 25 keV accretion luminosities of between 0.7*10^(46) erg s^(-1) and 5.2*10^(47) erg s^(-1). Based on single-epoch spectroscopic virial black hole mass estimates, we find that these quasars are accreting at substantial Eddington fractions, 0.1 \le L/LEdd \le 1.

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Cited by 1 Pith paper

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  1. Estimating the spins of supermassive black holes in distant ultraluminous quasars

    astro-ph.HE 2025-05 conditional novelty 5.0 of 10

    Using radiative-efficiency scaling relations, the authors derive mostly a>0.9 spins for 6<z<7.5 ultraluminous quasars and interpret spin-mass-redshift correlations as evidence of high-rate disk accretion.

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