Spectroscopic and eclipsing binary systems offer the best means for determining accurate physical properties of stars, including their masses and radii. The data available for low-mass stars have yielded firm evidence that stellar structure models predict smaller radii and higher effective temperatures than observed, but the number of systems with detailed analyses is still small. In this paper, we present a complete reanalysis of one of such eclipsing systems, CM Dra, composed of two dM4.5 stars. New and existing light curves as well as a radial velocity curve are modeled to measure the physical properties of both components. The masses and radii determined for the components of CM Dra are M 1 = 0.2310 ± 0.0009 M sun, M 2 = 0.2141 ± 0.0010...
Several low-mass eclipsing binary stars show larger than expected radii for their measured mass, met...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
A gold standard for the study of M dwarfs is the eclipsing binary CM Draconis. It is rare because it...
The CM Draconis system comprises two eclipsing mid-M dwarfs of nearly equal mass in a 1.27-day orbit...
[eng] The comparison between stellar structure models and observations of low-mass stars revealed th...
The fundamental properties of low-mass stars are not as well understood as those of their more massi...
We present the most precise to date orbital and physical parameters of the well-known short period (...
The absolute parameters of M-dwarfs in eclipsing binary systems provide important tests for evolutio...
We identify 231 objects in the newly released Cycle 0 data set from the Kepler Mission as double-ecl...
We present an analysis of the eclipsing single-lined spectroscopic binary system a Dra based on phot...
Magnetic fields in low-mass (<0.8 Mʘ) stars affect the fundamental stellar properties. In short-peri...
Context. Low-mass stars in eclipsing binary systems show radii larger and effective temperatures low...
CONTEXT: Massive stars at low metallicity are among the main feedback agents in the early Universe a...
We report an age revision for the low-mass detached eclipsing binary CM Draconis and its common prop...
Only a few well characterized very low-mass M dwarfs are known today. Our understanding of M dwarfs ...
Several low-mass eclipsing binary stars show larger than expected radii for their measured mass, met...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
A gold standard for the study of M dwarfs is the eclipsing binary CM Draconis. It is rare because it...
The CM Draconis system comprises two eclipsing mid-M dwarfs of nearly equal mass in a 1.27-day orbit...
[eng] The comparison between stellar structure models and observations of low-mass stars revealed th...
The fundamental properties of low-mass stars are not as well understood as those of their more massi...
We present the most precise to date orbital and physical parameters of the well-known short period (...
The absolute parameters of M-dwarfs in eclipsing binary systems provide important tests for evolutio...
We identify 231 objects in the newly released Cycle 0 data set from the Kepler Mission as double-ecl...
We present an analysis of the eclipsing single-lined spectroscopic binary system a Dra based on phot...
Magnetic fields in low-mass (<0.8 Mʘ) stars affect the fundamental stellar properties. In short-peri...
Context. Low-mass stars in eclipsing binary systems show radii larger and effective temperatures low...
CONTEXT: Massive stars at low metallicity are among the main feedback agents in the early Universe a...
We report an age revision for the low-mass detached eclipsing binary CM Draconis and its common prop...
Only a few well characterized very low-mass M dwarfs are known today. Our understanding of M dwarfs ...
Several low-mass eclipsing binary stars show larger than expected radii for their measured mass, met...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
A gold standard for the study of M dwarfs is the eclipsing binary CM Draconis. It is rare because it...