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Tommy Wiklind

Publications and source records attributed to Tommy Wiklind.

40 records · Page 3Linked to original sources

The complex molecular absorption line system at z=0.886 towards PKS1830-211

New millimeter wave observations of the molecular absorption line system in the gravitational lens to PKS1830-211 at z=0.88582 is presented. Self-calibrated interferometer data shows unequivocally that the previously detected absorption component is associated with the gravitationally lensed south-west image of the background source. A second absorption line of HCO+(2-1) at z=0.88582 is detected. This component is shifted in velocity by -147 km/s relative to the main absorption line, and is shown to be associated with the north-east image. These two absorption lines are used to constrain the mass of the lensing galaxy. Upper limits to absorption and emission lines from the possible absorption system at z=0.1927, seen in 21cm HI by Lovell et al, are reported.

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Molecular absorption lines at high redshift: PKS1413+135 (z=0.247)

A detailed study of the absorbing molecular clouds towards the radio source PKS1413+135, at a redshift z=0.247, is reported. Physical conditions are derived for the molecular gas in the frame work of two models: a homogeneous multicomponent model with equal filling factors, and a two-phase medium consisting of dense clumps embedded in a more diffuse component. Our absorption data are consistent with the presence of a diffuse gas component, dominating the observed opacity, and a dense component, accounting for most of the mass. We show that without knowledge of the small scale structure of the absorbing molecular gas, we can only derive lower limits to the column density. We find that the opacity ratio between two absorbing components in CO has varied by a factor 2.3 \pm 0.3. We also discuss what can be derived from molecular absorption line observations concerning the invariance of physical constants.

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Molecular gas in the elliptical galaxy NGC759. Interferometric CO observations

Interferometric observations of the CO(1-0) line in the elliptical galaxy NGC759 shows that it contains 2 10^9 Mo of molecular gas, confined to a circumnuclear ring with an average radius of only 650pc. The maximum gas surface density is 750 Mo/pc^2, which is comparable to the critical gas surface density for large scale gravitational instabilities. The low CO(2-1)/CO(1-0) ratio of 0.4 is consistent with a two-component molecular gas, consisting of a cold and dense phase, containing most of the mass, and a warm and diffuse component dominating the CO emission. We use a mass model for the underlying galaxy which is applicable to spherical galaxies with an r^1/4 luminosity profile. This leads to more modest estimates of the molecular gas fraction and gas surface density then would have been derived using simpler models, suggesting that many of the spectacular molecular gas properties of ultraluminous FIR galaxies, which could be described by similar mass models, may have to be revised. We discuss the possibility that NGC759 is in a late stage of a merging between two gas-rich disk galaxies.

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Molecular absorption and its time variations in Cen A

New high-quality absorption spectra of J=0-1 HCO+, HCN, HNC and the J=1-2 line of CS towards the radio core of Cen A are presented and analysed. In addition, the J=0-1 line of of H13CO+ has been detected. The new high signal-to-noise HCO+ spectrum allows a comparison with results obtained more than 7 years earlier. No significant changes in the spectrum is found. From this we can put constraints on the size of the continuum source. Relative molecular abundances are compatible with those of the Milky Way. A parametrization of the high signal-to-noise spectrum of HCO+(0-1) is presented, for future reference when looking for spectral changes.

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