Optical interferometry is the only technique giving access to milli-arcsecond (mas) spatial resolution. This is a powerful and unique tool to detect the close orbiting companions of Cepheids, and offers an unique opportunity to make progress in resolving the Cepheid mass discrepancy. Our goal in studying binary Cepheids is to measure the astrometric position of the high-contrast companion, and then combine them with spectroscopic measurements to derive the orbital elements, distances, and dynamical masses. In the course of this program, we developed a new tool, CANDI
International audienceUnbiased angular diameter measurements are required for accurate distances to ...
Optical interferometry is a powerful technique for the study of stars in exquisite details, by enabl...
The very high spatial resolution provided by current interferometers (VLTI, CHARA, …) makes it possi...
Classical Cepheid stars have been considered since more than a century as reliable tools to estimate...
Aims. We aim at detecting and characterizing the main-sequence companions of a sample of known and s...
Context. More than 60 % of Cepheids are in binary or multiple systems. Studying such systems could l...
Context. More than 60 % of Cepheids are in binary or multiple systems. Studying such systems could l...
We give an update on our long-term program of Galactic Cepheids started in 2012, whose goal is to me...
Artículo de publicación ISIContext. Long-baseline interferometry is an important technique to spatia...
In 2005, interferometric observations with VLTI/VINCI and CHARA/FLUOR revealed the existence of a ci...
Abstract. Masses determined from classical Cepheids in binary systems are a primary test of both pul...
We report new CHARA/Michigan InfraRed Combiner interferometric observations of the Cepheid archetype...
Aims. High-resolution imaging in several photometric bands can provide color and astrometric informa...
International audienceLong baseline interferometry is now able to resolve the pulsational changes of...
Unbiased angular diameter measurements are required for accurate distances to Cepheids using the int...
International audienceUnbiased angular diameter measurements are required for accurate distances to ...
Optical interferometry is a powerful technique for the study of stars in exquisite details, by enabl...
The very high spatial resolution provided by current interferometers (VLTI, CHARA, …) makes it possi...
Classical Cepheid stars have been considered since more than a century as reliable tools to estimate...
Aims. We aim at detecting and characterizing the main-sequence companions of a sample of known and s...
Context. More than 60 % of Cepheids are in binary or multiple systems. Studying such systems could l...
Context. More than 60 % of Cepheids are in binary or multiple systems. Studying such systems could l...
We give an update on our long-term program of Galactic Cepheids started in 2012, whose goal is to me...
Artículo de publicación ISIContext. Long-baseline interferometry is an important technique to spatia...
In 2005, interferometric observations with VLTI/VINCI and CHARA/FLUOR revealed the existence of a ci...
Abstract. Masses determined from classical Cepheids in binary systems are a primary test of both pul...
We report new CHARA/Michigan InfraRed Combiner interferometric observations of the Cepheid archetype...
Aims. High-resolution imaging in several photometric bands can provide color and astrometric informa...
International audienceLong baseline interferometry is now able to resolve the pulsational changes of...
Unbiased angular diameter measurements are required for accurate distances to Cepheids using the int...
International audienceUnbiased angular diameter measurements are required for accurate distances to ...
Optical interferometry is a powerful technique for the study of stars in exquisite details, by enabl...
The very high spatial resolution provided by current interferometers (VLTI, CHARA, …) makes it possi...