Errors in the kinematic distances, under the assumption of circular gas orbits, were estimated by performing synthetic observations of a model disk galaxy. It was found that the error is < 0.5 kpc for most of the disk when the measured rotation curve was used, but larger if the real rotation curve is applied. In both cases, the error is significantly larger at the positions of the spiral arms. The error structure is such that, when kinematic distances are used to develope a picture of the large scale density distribution, the most significant features of the numerical model are significantly distorted or absent, while spurious structure appears. By considering the full velocity field in the calculation of the kinematic distances, most of th...
Using atomic hydrogen (H i) data from the VLA Galactic Plane Survey, we measure the H i terminal vel...
The stellar disc kinematics in a sample of 15 intermediate- to late-type edge-on spiral galaxies are...
Using the integral field unit DensePak on the WIYN 3.5 m telescope we have obtained H\u3b1 velocity ...
International audienceIn the fundamental quest of the rotation curve of the Milky Way, the tangent-p...
We present a new method for detecting and correcting systematic errors in the distances to stars whe...
The Herschel survey of the Galactic Plane (Hi-GAL) is a continuum Galactic plane survey in five wave...
We present a new method for detecting and correcting systematic errors in the distances to stars whe...
We use mock interferometric H I measurements and a conventional tilted-ring modelling procedure to e...
Aims. Our goal is to calculate the circular velocity curve of the Milky Way, along with correspondin...
Kinematic distances to 750 molecular clouds identified in the [superscript 13]CO J = 1 → 0 Boston Un...
Rotation curves are often used to estimate the mass distribution of spiral galaxies, assuming circul...
Context. Recent statistical deconvolution methods have produced extended kinematical maps in a range...
Rotation curves are often used to estimate the mass distribution of spiral galaxies, assuming that t...
International audienceWe measure the Milky Way's rotation curve over the Galactocentric range 4 kpc ...
FGR-F and IAB gratefully acknowledge support from the ERC Advanced Grant ECOGAL project, grant agree...
Using atomic hydrogen (H i) data from the VLA Galactic Plane Survey, we measure the H i terminal vel...
The stellar disc kinematics in a sample of 15 intermediate- to late-type edge-on spiral galaxies are...
Using the integral field unit DensePak on the WIYN 3.5 m telescope we have obtained H\u3b1 velocity ...
International audienceIn the fundamental quest of the rotation curve of the Milky Way, the tangent-p...
We present a new method for detecting and correcting systematic errors in the distances to stars whe...
The Herschel survey of the Galactic Plane (Hi-GAL) is a continuum Galactic plane survey in five wave...
We present a new method for detecting and correcting systematic errors in the distances to stars whe...
We use mock interferometric H I measurements and a conventional tilted-ring modelling procedure to e...
Aims. Our goal is to calculate the circular velocity curve of the Milky Way, along with correspondin...
Kinematic distances to 750 molecular clouds identified in the [superscript 13]CO J = 1 → 0 Boston Un...
Rotation curves are often used to estimate the mass distribution of spiral galaxies, assuming circul...
Context. Recent statistical deconvolution methods have produced extended kinematical maps in a range...
Rotation curves are often used to estimate the mass distribution of spiral galaxies, assuming that t...
International audienceWe measure the Milky Way's rotation curve over the Galactocentric range 4 kpc ...
FGR-F and IAB gratefully acknowledge support from the ERC Advanced Grant ECOGAL project, grant agree...
Using atomic hydrogen (H i) data from the VLA Galactic Plane Survey, we measure the H i terminal vel...
The stellar disc kinematics in a sample of 15 intermediate- to late-type edge-on spiral galaxies are...
Using the integral field unit DensePak on the WIYN 3.5 m telescope we have obtained H\u3b1 velocity ...