X-Ray Emission from M32: X-Ray Binaries or a micro-AGN?
Abstract
We have analysed archival {\it ROSAT} PSPC data for M32 in order to study the x-ray emission from this nearest elliptical galaxy. We fit spectra from three long exposures with Raymond-Smith, thermal bremsstrahlung, and power-law models. All models give excellent fits. The thermal fits have kT4 keV, the Raymond-Smith iron abundance is Solar, the power-law fit has =1.60.1, and all fits have consistent with the Galactic column. The source is centered on M32 to an accuracy of 9, and unresolved at 27 FWHM (90 pc). M32 is x-ray variable by a factor of 3--5 on timescales of a decade down to minutes, with evidence for a possible period of 1.3 days. There are two plausible interpretations for these results: 1) Emission due to low-mass x-ray binaries; 2) Emission due to accretion onto a massive central black hole. Both of these possibilities are supported by arguments based on previous studies of M32 and other old stellar systems; the {\it ROSAT} PSPC data do not allow us to unambiguously choose between them. Observations with the {\it ROSAT} HRI and with {\it ASCA} are required to determine which of these two very different physical models is correct.
Cite
@article{arxiv.astro-ph/9603100,
title = {X-Ray Emission from M32: X-Ray Binaries or a micro-AGN?},
author = {Paul B. Eskridge and Raymond E. White and David S. Davis},
journal= {arXiv preprint arXiv:astro-ph/9603100},
year = {2016}
}
Comments
9 pages, 5 PostScript figures, uses AASTeX style files, Accepted for publication in Astrophysical Journal Letters