Context. Some Miras (long-period variables in late evolutionary stages) have meandering pulsation periods and light-curve asymmetries, the causes of which are still unclear. Aims. We aim to better understand the origin of meandering periods and light-curve asymmetries by investigating a sample of Miras in the solar neighbourhood. We characterised this group of stars and related their variability characteristics to other stellar parameters. Methods. We analysed observations from several databases to obtain light curves with maximum time span and temporal coverage for a sample of 548 Miras. We determined their pulsation-period evolution over a time span of many decades, searched for changes in the periods, and determined the amplitude of the ...
In this paper we present radial velocity curves of AGB variables that exhibit various kinds of ano...
Based on a 15-20 year long monitoring program of H2O masers and new observations of OH masers discov...
We studied the pulsational period of the Mira star S Orionis based on visual observations that cover...
Context. Some Miras (long-period variables in late evolutionary stages) have meandering pulsation pe...
Context. The mass-loss process in Mira stars probably occurs in an asymmetric way where dust can for...
Aims. We report the discovery that Mira variables with and without absorption lines of the element t...
We present an updated and improved description of the light curve behaviour of T Ursae Minoris, whi...
Context. Miras are long-period variables thought to be in the asymptotic giant branch (AGB) phase of...
International audienceContext. Variability is a key property of stars on the asymptotic giant branch...
Artículo de publicación ISIContext. The mass-loss process in Mira stars probably occurs in an asymme...
After a brief review of our current understanding of Miras and their evolutionary status, three aspe...
For nine Mira-type stars (o Cet, R Leo, S Car, U Her, X Oph, R Aql, RR Aql, S Ori, S Scl,) and one s...
Context. Miras are long-period variables thought to be in the asymptotic giant branch (AGB) phase o...
International audienceContext. Mass loss from long-period variable stars (LPV) is an important contr...
In this paper we present radial velocity curves of AGB variables that exhibit various kinds of ano...
Based on a 15-20 year long monitoring program of H2O masers and new observations of OH masers discov...
We studied the pulsational period of the Mira star S Orionis based on visual observations that cover...
Context. Some Miras (long-period variables in late evolutionary stages) have meandering pulsation pe...
Context. The mass-loss process in Mira stars probably occurs in an asymmetric way where dust can for...
Aims. We report the discovery that Mira variables with and without absorption lines of the element t...
We present an updated and improved description of the light curve behaviour of T Ursae Minoris, whi...
Context. Miras are long-period variables thought to be in the asymptotic giant branch (AGB) phase of...
International audienceContext. Variability is a key property of stars on the asymptotic giant branch...
Artículo de publicación ISIContext. The mass-loss process in Mira stars probably occurs in an asymme...
After a brief review of our current understanding of Miras and their evolutionary status, three aspe...
For nine Mira-type stars (o Cet, R Leo, S Car, U Her, X Oph, R Aql, RR Aql, S Ori, S Scl,) and one s...
Context. Miras are long-period variables thought to be in the asymptotic giant branch (AGB) phase o...
International audienceContext. Mass loss from long-period variable stars (LPV) is an important contr...
In this paper we present radial velocity curves of AGB variables that exhibit various kinds of ano...
Based on a 15-20 year long monitoring program of H2O masers and new observations of OH masers discov...
We studied the pulsational period of the Mira star S Orionis based on visual observations that cover...