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Michael L. Allen

Publications and source records attributed to Michael L. Allen.

2 recordsLinked to original sources

Gas and dust in NGC 7469: sub-mm imaging and CO J=3-2

We present sensitive sub-mm imaging of the Seyfert 1 galaxy NGC 7469 at 850 $μ$m and 450 $μ$m with the Submillimetre Common User Bolometer Array (SCUBA) on the James Clerk Maxwell Telescope (JCMT) and ^{12}CO J=3-2 line observations of its central starbursting region. The global dust spectrum, as constrained by the new set of sub-mm data and available 1.30 mm and IRAS 100 $μ$m, 60 $μ$m data reveals a dominant warm dust component with a temperature of $\rm T_{\rm d} \sim 35$ K and a global molecular gas-to-dust ratio $\rm M(H_2)/M_{\rm d}\sim 600$. Such high values are typical for IR-bright spirals and in order to reconcile them with the significantly lower ratio of ~ 100 obtained for the Milky Way a cold dust reservoir, inconspicuous at FIR wavelengths, is usually postulated. We present evidence that, rather than unaccounted cold dust mass, this high ratio suggests an overestimate of $\rm M(H_2)$ from its associated ^{12}CO J=1-0 line luminosity by a factor of ~ 5 when a Milky Way value for this conversion is used in starburst nuclei environments.

astro-ph

Detailed Radio Spectra of Selected Compact Sources in the Nucleus of M82

We have determined detailed radio spectra for 26 compact sources in the starburst nucleus of M82, between 74 and 1.3 cm. Seventeen show low-frequency turnovers. One other has a thermal emission spectrum, and we identify it as an HII region. The low frequency turnovers are due to absorption by the interstellar gas in M82. New information on the AGN candidate 44.01+595, shows it to have a non-thermal falling powerlaw spectrum at the highest frequencies, and that it is strongly absorbed below 2 GHz. We derive large magnetic fields in the supernova remnants, of order 1-2 milliGauss, hence large pressures in the sources suggest that the brightest ones are either expanding or are strongly confined by a dense interstellar medium. From the largest source in our sample, we derive a supernova rate of 0.016 SN/yr.

astro-ph