We developed a code that estimates distances to stars using measured spectroscopic and photometric quantities. We employ a Bayesian approach to build the probability distribution function over stellar evolutionary models given these data, delivering estimates of model parameters for each star individually. The code was first tested on simulations, successfully recovering input distances to mock stars with <1% bias.The method-intrinsic random distance uncertainties for typical spectroscopic survey measurements amount to around 10% for dwarf stars and 20\% for giants, and are most sensitive to the quality of $\log g$ measurements. The code was validated by comparing our distance estimates to parallax measurements from the Hipparcos mission fo...
We combine parallaxes from the first Gaia data release with the spectrophotometric distance estimati...
We apply the method of Burnett & Binney (2010, MNRAS, 407, 339) for the determination of stellar dis...
In "A Bayesian Approach to Locating the Red Giant Branch Tip Magnitude (Part I)," a new technique wa...
Context. Determining distances to individual field stars is a necessary step towards mapping Galacti...
Context. Determining distances to individual field stars is a necessary step towards mapping Galacti...
A Bayesian approach to the determination of stellar distances from photometric and spectroscopic dat...
Understanding the formation and evolution of our Galaxy requires accurate distances, ages, and chemi...
Probability density functions (pdfs) are determined from new stellar parameters for the distance mod...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
We apply the method of Burnett & Binney (2010, MNRAS, 407, 339) for the determination of stellar dis...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
Using a Bayesian technology, we derived distances and extinctions for over 100 000 red giant stars o...
We apply the method of Burnett & Binney (2010, MNRAS, 407, 339) for the determination of stellar dis...
We combine parallaxes from the first Gaia data release with the spectrophotometric distance estimati...
We apply the method of Burnett & Binney (2010, MNRAS, 407, 339) for the determination of stellar dis...
In "A Bayesian Approach to Locating the Red Giant Branch Tip Magnitude (Part I)," a new technique wa...
Context. Determining distances to individual field stars is a necessary step towards mapping Galacti...
Context. Determining distances to individual field stars is a necessary step towards mapping Galacti...
A Bayesian approach to the determination of stellar distances from photometric and spectroscopic dat...
Understanding the formation and evolution of our Galaxy requires accurate distances, ages, and chemi...
Probability density functions (pdfs) are determined from new stellar parameters for the distance mod...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
We apply the method of Burnett & Binney (2010, MNRAS, 407, 339) for the determination of stellar dis...
The RAdial Velocity Experiment (RAVE) is a spectroscopic survey of the Milky Way which already colle...
Using a Bayesian technology, we derived distances and extinctions for over 100 000 red giant stars o...
We apply the method of Burnett & Binney (2010, MNRAS, 407, 339) for the determination of stellar dis...
We combine parallaxes from the first Gaia data release with the spectrophotometric distance estimati...
We apply the method of Burnett & Binney (2010, MNRAS, 407, 339) for the determination of stellar dis...
In "A Bayesian Approach to Locating the Red Giant Branch Tip Magnitude (Part I)," a new technique wa...