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Related papers: Exploring the Brown Dwarf Desert with Precision Ra…

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The brown dwarf desert describes a range of orbital periods (<5 years) in which fewer brown dwarf-mass companions have been observed around Sun-like stars, when compared to planets and low mass stellar companions. It is therefore theorised…

Solar and Stellar Astrophysics · Physics 2026-01-08 A. L. Wallace , A. R. Casey

We combine absolute astrometry from Hipparcos and Gaia with archival radial velocities from the Keck/HIRES and ESO/HARPS spectrographs, as well as relative astrometry (when available), to derive masses and orbits for 156 companions around…

Earth and Planetary Astrophysics · Physics 2025-08-13 Qier An , Timothy D. Brandt , G. Mirek Brandt , Alexander Venner

The third Gaia data release (DR3) contains $\sim$170\,000 astrometric orbit solutions of two-body systems located within $\sim$500 pc of the Sun. Determining component masses in these systems, in particular of stars hosting exoplanets,…

Earth and Planetary Astrophysics · Physics 2025-03-17 Johannes Sahlmann , Pablo Gómez

We have created an up-to-date catalogue of 214 brown dwarfs (BDs) in binaries with $P < 10^4$ d. This allows us to examine the population statistics of the brown dwarf desert. We searched $\textit{Gaia}$ DR3 NSS results for orbital…

Solar and Stellar Astrophysics · Physics 2023-10-05 Adam T. Stevenson , Carole A. Haswell , John R. Barnes , Joanna K. Barstow

Precise mass constraints are vital for the characterisation of brown dwarfs and exoplanets. Here we present how the combination of data obtained by Gaia and GRAVITY can help enlarge the sample of substellar companions with measured…

Planet searches using the radial velocity technique show a paucity of companions to solar-type stars within ~5 AU in the mass range of ~10 - 80 M$_{\text{Jup}}$. This deficit, known as the brown dwarf desert, currently has no conclusive…

Astrometric discovery of sub-stellar mass companions orbiting stars is exceedingly hard due to the required sub-milliarcsecond precision, limiting the application of this technique to only a few instruments on a target-per-target basis as…

Earth and Planetary Astrophysics · Physics 2023-06-21 B. Holl , A. Sozzetti , J. Sahlmann , P. Giacobbe , D. Ségransan , N. Unger , J. B. Delisle , D. Barbato , M. G. Lattanzi , R. Morbidelli , D. Sosnowska

We present a comprehensive Bayesian statistical analysis of brown dwarf companions to investigate the physical mechanisms responsible for the observed ``brown dwarf desert'' -- the notable paucity of brown dwarf companions at orbital…

Earth and Planetary Astrophysics · Physics 2026-03-25 Behrooz Karamiqucham

The astrometric space mission Gaia is expected to detect a large number of brown dwarf binary systems with close orbits and determine astrometric orbit solutions. This will provide key information for the formation and evolution of brown…

Solar and Stellar Astrophysics · Physics 2014-07-30 V. Joergens , S. Reffert

Brown-dwarfs are substellar objects with masses intermediate between planets and stars within about 13-80Mjup. While isolated BDs are most likely produced by gravitational collapse in molecular clouds down to masses of a few Mjup, a…

In its all-sky survey, Gaia will monitor astrometrically and photometrically millions of main-sequence stars with sufficient sensitivity to brown dwarf companions within a few AUs from their host stars and to transiting brown dwarfs on very…

Solar and Stellar Astrophysics · Physics 2014-06-06 A. Sozzetti

Context: The current sample of known brown dwarfs (BDs) around FGK-stars is only of the order of a hundred. The ongoing ESA mission Gaia has already collected its nominal 5 yr of mission data and might operate up to 10 yr. Aims: Using…

Solar and Stellar Astrophysics · Physics 2022-05-25 B. Holl , M. Perryman , L. Lindegren , D. Segransan , M. Raimbault

Abbreviated. We aim to identify new low-mass companions to young stars using the astrometric measurements provided by the Gaia space mission and complementary VLT/SPHERE data. We identify companion candidates from a sample of K-type,…

In preparation for the release of the astrometric orbits of Gaia, Shahaf et al. (2019) proposed a triage technique to identify astrometric binaries with compact companions based on their astrometric semi-major axis, parallax, and primary…

Solar and Stellar Astrophysics · Physics 2022-11-30 Sahar Shahaf , Dolev Bashi , Tsevi Mazeh , Simchon Faigler , Frédéric Arenou , Kareem El-Badry , Hans-Walter Rix

Measuring the occurrence rates of celestial objects is a valuable way to study their origins and evolution. Giant planets and brown dwarfs produce large Doppler signatures that are easily detectable by modern instrumentation, and legacy…

Earth and Planetary Astrophysics · Physics 2026-03-13 Judah Van Zandt , Greg Gilbert , Steven Giacalone , Erik Petigura , Andrew Howard , Luke Handley

The Gaia mission is expected to yield the detection of several thousands of exoplanets, perhaps at least doubling the number of known exoplanets. Although the harvest is expected to occur when the astrometric time series will be published…

Earth and Planetary Astrophysics · Physics 2025-10-15 Flavien Kiefer , Anne-Marie Lagrange , Pascal Rubini , Florian Philipot

Radial velocity planet search surveys of nearby Solar-type stars have shown a strong deficit of brown dwarf companions within $\sim5\,\mathrm{AU}$. There is presently no comprehensive explanation of this lack of brown dwarf companions,…

The mass domain where massive extrasolar planets and brown dwarfs overlap is still poorly understood due to the paucity of brown dwarfs orbiting close to solar-type stars, the so-called brown dwarf desert. In this paper we collect all of…

Earth and Planetary Astrophysics · Physics 2015-06-15 Bo Ma , Jian Ge

A historical planet-search on a sample of 1647 nearby southern main sequence stars has been ongoing since 1998 with the CORALIE spectrograph at La Silla Observatory, with a backup subprogram dedicated to the monitoring of binary stars. We…

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