Article (Scientific journals)
First-light LBT Nulling Interferometric Observations: Warm Exozodiacal Dust Resolved within a Few AU of eta Crv
Defrere, Denis; Hinz, P. M.; Skemer, A. J. et al.
2015In Astrophysical Journal, 799, p. 42
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Keywords :
circumstellar matter; infrared: planetary systems; infrared: stars; instrumentation: interferometers; stars: individual: eta Crv
Abstract :
[en] We report on the first nulling interferometric observations with the Large Binocular Telescope Interferometer (LBTI), resolving the N' band (9.81-12.41 μm) emission around the nearby main-sequence star η Crv (F2V, 1-2 Gyr). The measured source null depth amounts to 4.40% ± 0.35% over a field-of-view of 140 mas in radius (~2.6 AU for the distance of η Crv) and shows no significant variation over 35° of sky rotation. This relatively low null is unexpected given the total disk to star flux ratio measured by the Spitzer Infrared Spectrograph (IRS; ~23% across the N' band), suggesting that a significant fraction of the dust lies within the central nulled response of the LBTI (79 mas or 1.4 AU). Modeling of the warm disk shows that it cannot resemble a scaled version of the solar zodiacal cloud unless it is almost perpendicular to the outer disk imaged by Herschel. It is more likely that the inner and outer disks are coplanar and the warm dust is located at a distance of 0.5-1.0 AU, significantly closer than previously predicted by models of the IRS spectrum (~3 AU). The predicted disk sizes can be reconciled if the warm disk is not centrosymmetric, or if the dust particles are dominated by very small grains. Both possibilities hint that a recent collision has produced much of the dust. Finally, we discuss the implications for the presence of dust for the distance where the insolation is the same as Earth's (2.3 AU).
Disciplines :
Space science, astronomy & astrophysics
Author, co-author :
Defrere, Denis ;  Université de Liège > Département d'astrophys., géophysique et océanographie (AGO) > Astroph. extragalactique et observations spatiales (AEOS)
Hinz, P. M.
Skemer, A. J.
Kennedy, G. M.
Bailey, V. P.
Hoffmann, W. F.
Mennesson, B.
Millan-Gabet, R.
Danchi, W. C.
Absil, Olivier  ;  Université de Liège - ULiège > Département d'astrophys., géophysique et océanographie (AGO) > Astroph. extragalactique et observations spatiales (AEOS)
Arbo, P.
Beichman, C.
Brusa, G.
Bryden, G.
Downey, E. C.
Durney, O.
Esposito, S.
Gaspar, A.
Grenz, P.
Haniff, C.
Hill, J. M.
Lebreton, J.
Leisenring, J. M.
Males, J. R.
Marion, Lindsay ;  Université de Liège - ULiège > Département d'astrophys., géophysique et océanographie (AGO) > Astroph. extragalactique et observations spatiales (AEOS)
McMahon, T. J.
Montoya, M.
Morzinski, K. M.
Pinna, E.
Puglisi, A.
Rieke, G.
Roberge, A.
Serabyn, E.
Sosa, R.
Stapeldfeldt, K.
Su, K.
Vaitheeswaran, V.
Vaz, A.
Weinberger, A. J.
Wyatt, M. C.
More authors (30 more) Less
Language :
English
Title :
First-light LBT Nulling Interferometric Observations: Warm Exozodiacal Dust Resolved within a Few AU of eta Crv
Publication date :
14 January 2015
Journal title :
Astrophysical Journal
ISSN :
0004-637X
eISSN :
1538-4357
Publisher :
IOP Publishing, Bristol, United Kingdom
Volume :
799
Pages :
42
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 08 March 2015

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