Context. High-precision astrometric and radial-velocity observations require accurate modelling of stellar motions in order to extrapolate measurements over long time intervals, and to detect deviations from uniform motion caused, for example, by unseen companions. Aims. We aim to explore the simplest possible kinematic model of stellar motions, namely that of uniform rectilinear motion relative to the solar system barycentre, in terms of observable quantities including error propagation. Methods. The apparent path equation for uniform rectilinear motion is solved analytically in a classical (special-relativistic) framework, leading to rigorous expressions that relate the (apparent) astrometric parameters and radial velocity to the (true) k...
Context. The Hundred-Thousand-Proper-Motion (HTPM) project will determine the proper motions of ∼113...
We analyse the kinematics of ~400 000 stars that lie within ̃2 kpc of the Sun and have spectra measu...
We present a new, simple method to predict activity-induced radial velocity varia-tions using high-p...
Context. High-precision astrometric and radial-velocity observations require accurate modelling of s...
Context. High-precision astrometric and radial-velocity observations require accurate modelling of s...
Context. Under certain conditions, stellar radial velocities can be determined from astrometry, with...
We present a new, simple method to predict activity-induced radial velocity (RV) variations using hi...
We present a new, simple method to predict activity-induced radial velocity variations using high-pr...
We present a new, simple method to predict activity-induced radial velocity (RV) variations using hi...
Context.Very precise planned space astrometric missions and recent improvements in imaging capabilit...
Context.Very precise planned space astrometric missions and recent improvements in imaging capabilit...
This work demonstrates the determination of absolute stellar radial velocities from geometrical prin...
Wavelength measurements in stellar spectra cannot readily be interpretedas true stellar motion on th...
The apparent radial velocity of a star, as deduced from wavelength shifts, comprises not merely its ...
Accuracy levels of metres per second require the fundamental concept of``radial velocity'' for stars...
Context. The Hundred-Thousand-Proper-Motion (HTPM) project will determine the proper motions of ∼113...
We analyse the kinematics of ~400 000 stars that lie within ̃2 kpc of the Sun and have spectra measu...
We present a new, simple method to predict activity-induced radial velocity varia-tions using high-p...
Context. High-precision astrometric and radial-velocity observations require accurate modelling of s...
Context. High-precision astrometric and radial-velocity observations require accurate modelling of s...
Context. Under certain conditions, stellar radial velocities can be determined from astrometry, with...
We present a new, simple method to predict activity-induced radial velocity (RV) variations using hi...
We present a new, simple method to predict activity-induced radial velocity variations using high-pr...
We present a new, simple method to predict activity-induced radial velocity (RV) variations using hi...
Context.Very precise planned space astrometric missions and recent improvements in imaging capabilit...
Context.Very precise planned space astrometric missions and recent improvements in imaging capabilit...
This work demonstrates the determination of absolute stellar radial velocities from geometrical prin...
Wavelength measurements in stellar spectra cannot readily be interpretedas true stellar motion on th...
The apparent radial velocity of a star, as deduced from wavelength shifts, comprises not merely its ...
Accuracy levels of metres per second require the fundamental concept of``radial velocity'' for stars...
Context. The Hundred-Thousand-Proper-Motion (HTPM) project will determine the proper motions of ∼113...
We analyse the kinematics of ~400 000 stars that lie within ̃2 kpc of the Sun and have spectra measu...
We present a new, simple method to predict activity-induced radial velocity varia-tions using high-p...