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Located at less than 2pc away, Luhman16AB (WISE.J104915.57-531906.1) is the closest pair of brown dwarfs and third closest `stellar' system to Earth. An exoplanet candidate in the Luhman16 binary system was reported in 2017 based on a weak…

地球与行星天体物理 · 物理学 2024-03-15 L. R. Bedin , J. Dietrich , A. J. Burgasser , D. Apai , M. Libralato , M. Griggio , C. Fontanive , D. Pourbaix

We present the results of an intense photometric monitoring in the near-infrared (~0.9 microns) with the TRAPPIST robotic telescope of the newly discovered binary brown dwarf WISE J104915.57-531906.1, the third closest system to the Sun at…

太阳与恒星天体物理 · 物理学 2015-06-15 M. Gillon , A. H. M. J. Triaud , E. Jehin , L. Delrez , C. Opitom , P. Magain , M. Lendl , D. Queloz

WISE J104915.57-531906.1 A+B and WISE J085510.83-071442.5 were recently discovered as the third and fourth closest known systems to the Sun, respectively (2.0 and 2.3 pc). The former consists of a L8+T0.5 binary and the latter is a probable…

太阳与恒星天体物理 · 物理学 2015-08-06 N. D. Melso , K. M. Kaldon , K. L. Luhman

Using FORS2 on the Very Large Telescope, we have astrometrically monitored over a period of two months the two components of the brown dwarf system WISE J104915.57-531906.1, the closest one to the Sun. Our astrometric measurements - with a…

太阳与恒星天体物理 · 物理学 2015-06-18 H. M. J. Boffin , D. Pourbaix , K. Muzic , V. D. Ivanov , R. Kurtev , Y. Beletsky , A. Mehner , J. P. Berger , J. H. Girard , D. Mawet

WISE J104915.57-531906.1 is the nearest brown dwarf binary to our Solar system, consisting of two brown dwarfs in the L/T transition: Luhman 16A & B. In this paper we present the first map of Luhman 16A, and maps of Luhman 16B for two…

地球与行星天体物理 · 物理学 2016-07-13 Theodora Karalidi , Daniel Apai , Mark S. Marley , Esther Buenzli

The nearest known binary brown dwarf WISE J104915.57-531906.1AB (LUH 16) is a well-studied benchmark for our understanding of substellar objects. Previously published astrometry of LUH 16 obtained with FORS2 on the Very Large Telescope was…

太阳与恒星天体物理 · 物理学 2018-10-24 P. F. Lazorenko , J. Sahlmann

We present results from a Hubble Space Telescope imaging search for low-mass binary and planetary companions to 33 nearby brown dwarfs with spectral types of T8-Y1. Our survey provides new photometric information for these faint systems,…

We present analysis of Hubble Space Telescope images of 82 nearby field late-M and L dwarfs. We resolve 13 of these systems into double M/L dwarf systems and identify an additional possible binary. Combined with previous observations of 20…

天体物理学 · 物理学 2010-01-28 J. E. Gizis , I. N. Reid , G. R. Knapp , J. Liebert , J. D. Kirkpatrick , D. W. Koerner , A. J. Burgasser

At a distance of 2~pc, our nearest brown dwarf neighbor, Luhman 16 AB, has been extensively studied since its discovery 3 years ago, yet its most fundamental parameter -- the masses of the individual dwarfs -- has not been constrained with…

The binary brown dwarf WISE J104915.57$-$531906.1 (also Luhman 16AB), composed of a late L and early T dwarf, is a prototypical L/T transition flux reversal binary located at only 2 pc distance. Luhman 16B is a known variable whose light…

We present a high signal-to-noise (SNR $\sim$ 450), high-dispersion ($R \equiv \lambda / \Delta \lambda \sim 28\,000$) H- and K-band spectroscopic atlas of the L7.5 and T0.5 components of the Luhman 16AB binary (WISE…

We analyse FORS2/VLT $I$-band imaging data to monitor the motions of both components in the nearest known binary brown dwarf WISE J104915.57-531906.1AB (LUH16) over one year. The astrometry is dominated by parallax and proper motion, but…

太阳与恒星天体物理 · 物理学 2015-09-09 Johannes Sahlmann , Petro F. Lazorenko

We present the results of a Hubble Space Telescope NICMOS imaging survey of 22 T-type field brown dwarfs. Five are resolved as binary systems with angular separations of 0"05-0"35, and companionship is established on the basis of component…

Using astrometric measurements obtained with the FORS2/VLT camera, we are searching for low-mass companions around 20 nearby ultracool dwarfs. With a single-measurement precision of 0.1 milli-arcseconds, our survey is sensitive to a wide…

太阳与恒星天体物理 · 物理学 2015-04-29 J. Sahlmann , P. F. Lazorenko , D. Segransan , E. L. Martin , M. Mayor , D. Queloz , S. Udry

I am using multi-epoch astrometry from the Wide-field Infrared Survey Explorer (WISE) to search for new members of the solar neighborhood via their high proper motions. Through this work, I have identified WISE J104915.57-531906.1 as a high…

星系天体物理 · 物理学 2015-06-15 K. L. Luhman

We present the results of a high-resolution spectral differential imaging survey of 12 nearby, relatively young field L dwarfs (<1 Gyr) carried out with HST/NICMOS to search for planetary mass companions at small physical separations from…

太阳与恒星天体物理 · 物理学 2015-05-19 M. B. Stumpf , W. Brandner , V. Joergens , Th. Henning , H. Bouy , R. Köhler , M. Kasper

In this paper we present our project that aims at determining accurate distances and proper motions for the Y brown dwarf population using the Hubble Space Telescope. We validate the program with our first results, using a single new epoch…

太阳与恒星天体物理 · 物理学 2020-12-09 Clemence Fontanive , Luigi R. Bedin , Daniella C. Bardalez Gagliuffi

WISE J104915.57$-$531906.1 is a L/T brown dwarf binary located 2pc from the Sun. The pair contains the closest known brown dwarfs and is the third closest known system, stellar or sub-stellar. We report comprehensive follow-up observations…

We present astrometric results from a Hubble Space Telescope (HST) campaign aimed at determining precise distances for cold Y-type brown dwarfs. Combining observations from a dedicated HST/WFC3 program with archival data, we derive…

太阳与恒星天体物理 · 物理学 2025-01-09 Clémence Fontanive , Luigi R. Bedin , Loïc Albert , Daniella C. Bardalez Gagliuffi

I report some observations and calculations related to the new nearby brown dwarf at d = 2 pc discovered by Luhman (2013, ApJ Letters, in press; arXiv:1303.2401). I report archival astrometry and photometry of the new object from IRAS…

太阳与恒星天体物理 · 物理学 2013-03-26 Eric E. Mamajek
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