Detection of two totally eclipsing B-type binaries with extremely low mass ratios
arXiv:2409.09246 · doi:10.3847/1538-4357/ad643b
Abstract
The detection of O- and B-type stars with extremely low-mass companions is very important for understanding the formation and evolution of binary stars. However, their finding remains a challenge because the low-mass components in such systems contribute such small flux to the total. During the searching for pulsations among O- and B-type stars by using the TESS data, we found two short-period and B-type (B9) eclipsing binaries with orbital periods of 1.61613 and 2.37857 days. Photometric solutions of the two close binaries were derived by analyzing the TESS light curves with the W-D method. It is discovered that both of them are detached binaries with extremely low mass ratios of 0.067(2) for TIC 260342097 and 0.140(3) for TIC 209148631, respectively. The determined mass ratio indicates that TIC 260342097 is one of the lowest mass ratios among known B-type binary systems. We showed that the two systems have total eclipses with a broad and flat secondary minimum, suggesting that the photometric parameters could be derived reliably. The absolute parameters of the two binaries are estimated and it is found that the secondary components in the two systems are over-luminous and over-size when compared with the normal low-mass and cool main-sequence (MS) stars. These findings may imply that the two systems are composed of a B-type MS primary and a cool pre-MS secondary with orbital periods shorter than 2.5 days. They are valuable targets to test theories of binary star formation and evolution.
9 pages; 6 figures; publised in The Astrophysical Journal
References in corpus (25)
- PARSEC: stellar tracks and isochrones with the PAdova and TRieste Stellar Evolution Code
- Gaia Data Release 3: Summary of the content and survey properties
- The Transiting Exoplanet Survey Satellite
- The WASP Project and the SuperWASP Cameras
- Mind your Ps and Qs: the Interrelation between Period (P) and Mass-ratio (Q) Distributions of Binary Stars
- The All-Sky Automated Survey for Supernovae (ASAS-SN) Light Curve Server v1.0
- A Gaia DR2 view of the Open Cluster population in the Milky Way
- Southern Massive Stars at High Angular Resolution: Observational Campaign and Companion Detection
- Gaia Data Release 2: first stellar parameters from Apsis
- The Catalina Surveys Periodic Variable Star Catalog
- Updated parameters of 1743 open clusters based on Gaia DR2
- Interrelated Main-Sequence Mass-Luminosity, Mass-Radius and Mass-Effective Temperature Relations
- Fragmentation of Massive Protostellar Disks
- The importance of episodic accretion for low-mass star formation
- Untangling the Galaxy. II. Structure within 3 kpc
- Variability Properties of 4 Million Sources in the Input Catalog Observed with the Kilodegree Extremely Little Telescope Survey
- 15000 Ellipsoidal Binary Candidates in TESS: Orbital Periods, Binary Fraction, and Tertiary Companions
- A New Class of Nascent Eclipsing Binaries with Extreme Mass Ratios
- Early-type Eclipsing Binaries with Intermediate Orbital Periods
- Detection of Low Mass-ratio Stellar Binary Systems
- Observational properties of 155 O- and B-type massive pulsating stars
- An Extreme-mass Ratio, Short-period Eclipsing Binary Consisting of a B Dwarf Primary and a Pre-main Sequence M Star Companion Discovered by KELT
- Extreme mass ratios and fast rotation in three massive binaries
- A catalog of new slowly pulsating B-type stars
- Discovery and Characterization of a Rare Magnetic Hybrid Cephei Slowly Pulsating B-type Star in an Eclipsing Binary in the Young Open Cluster NGC 6193