High-resolution measurements of the rapid rotation and large velocity dispersion in the nucleus of the Andromeda nebula (M31) hint at the possible influence of a massive black hole in that region. The recent detection of an unresolved radio source coincident with the dynamical center of the galaxy has evoked a direct comparison of M31's nucleus with the compact, nonthermal radio source Sgr A^*^ at the center of our own Galaxy. We calculate the broad-band spectrum expected of a 10^7^ M_sun_ black hole accreting from an ambient galactic wind in the nucleus of M31, and we discuss several testable predictions of this model: (1) when resolved, this source will probably be elongated, perhaps in the direction of the semistellar nucleus BD + 40^deg^148; (2) its radio spectral index is expected to be ~o.4 (compared with ~0.25 for Sgr A*); (3) the radio component should steepen sharply between ~10^10^ and 10^11^ HZ; (4) if an association between this radio source and a nearby Einstein X-ray source is confirmed, its radio luminosity should be variable on a time of <~1 yr; and (5) the variability of its radio and X-ray fluxes should be anticorrelated.
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Fulvio Melia (1992) studied this question.