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April 1, 2001The Astrophysical Journal50 citationsOpen Access

Constraining the Black Hole Mass and Accretion Rate in the Narrow‐Line Seyfert 1 Galaxy RE J1034+396

EPE. M. PuchnarewiczKMK. O. MasonASAneta Siemiginowska

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Abstract

We present a comprehensive study of the spectrum of the narrow-line Seyfert 1 galaxy RE J1034+396, summarizing the information obtained from the optical to X-rays with observations from the William Herschel 4. 2m Telescope (WHT), the Hubble Space Telescope, the Extreme UltraViolet Explorer, ROSAT, ASCA and BeppoSAX. The BeppoSAX spectra reveal a soft component which is well-represented by two blackbodies with kT of about 60 eV and 160 eV, mimicking that expected from a hot, optically-thick accretion disc around a low-mass black hole. This is borne out by our modeling of the optical to X-ray nuclear continuum, which constrains the physical parameters of a NLS1 for the first time. The models demonstrate that RE J1034+396 is likely to be a system with a nearly edge-on accretion disk (60 to 75 degrees from the disk axis), accreting at nearly Eddington rates (0. 3 to 0. 7 Lₑdd) onto a low mass (about 2 million solar masses) black hole (abridged).

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Puchnarewicz et al. (2001) studied this question.

synapsesocial.com/papers/6a21a6c7153b2036cbf1edc4https://doi.org/10.1086/319775
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