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Accretion disk onto boson stars: a way to supplant black holes candidates

2005/12/31 by F. Siddhartha Guzman · 1 citation
Physics and Astronomy · #gr-qc #astro-ph

paper · pdf · doi:10.1103/physrevd.73.021501

published as Phys.Rev. D73 (2006) 021501 · 5 pages, 7 figures. v2=v1 + minor changes: matches the published version

arxiv created 2006/01/24 · arxiv updated 2009/12/01

Abstract

The emission spectrum from a simple accretion disk model around a compact object is compared for the cases of a black hole (BH) and a boson star (BS) playing the role of the central object. It was found in the past that such a spectrum presents a hardening at high frequencies; however, here it is shown that the self-interaction and compactness of the BS have the effect of softening the spectrum, the less compact the star is, the softer the emission spectrum at high frequencies. Because the mass of the boson fixes the mass of the star and the self-interaction the compactness of the star, we find that, for certain values of the BS parameters, it is possible to produce similar spectra to those generated when the central object is a BH. This result presents two important implications: (i) using this simple accretion model, a BS can supplant a BH in the role of compact object accreting matter, and (ii) within the assumptions of the present accretion disk model we do not find a prediction that could help distinguish a BH from a BS with appropriate parameters of mass and self-interaction.

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