The TWA 3 Young Triple System: Orbits, Disks, Evolution

We have characterized the spectroscopic orbit of the TWA 3A binary and provide preliminary families of probable solutions for the TWA 3A visual orbit, as well as for the wide TWA 3A-B orbit. TWA 3 is a hierarchical triple located at 34 pc in the similar to 10 Myr old TW Hya association. The wide com...

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Main Authors: Kellogg, Kendra, Prato, L., Torres, Guillermo, Schaefer, G. H., Avilez, I., Ruíz-Rodríguez, D., Wasserman, L. H., Bonanos, Alceste Z., Guenther, E. W., Neuhäuser, R., Levine, S. E., Bosh, A. S., Morzinski, Katie M., Close, Laird, Bailey, Vanessa, Hinz, Phil, Males, Jared R.
Other Authors: Univ Arizona, Steward Observ
Language:en
Published: IOP PUBLISHING LTD 2017
Subjects:
Online Access:http://hdl.handle.net/10150/625499
http://arizona.openrepository.com/arizona/handle/10150/625499
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6254992017-09-16T03:00:32Z The TWA 3 Young Triple System: Orbits, Disks, Evolution Kellogg, Kendra Prato, L. Torres, Guillermo Schaefer, G. H. Avilez, I. Ruíz-Rodríguez, D. Wasserman, L. H. Bonanos, Alceste Z. Guenther, E. W. Neuhäuser, R. Levine, S. E. Bosh, A. S. Morzinski, Katie M. Close, Laird Bailey, Vanessa Hinz, Phil Males, Jared R. Univ Arizona, Steward Observ binaries: spectroscopic binaries: visual circumstellar matter stars: individual (TWA 3) We have characterized the spectroscopic orbit of the TWA 3A binary and provide preliminary families of probable solutions for the TWA 3A visual orbit, as well as for the wide TWA 3A-B orbit. TWA 3 is a hierarchical triple located at 34 pc in the similar to 10 Myr old TW Hya association. The wide component separation is 1."55; the close pair was first identified as a possible binary almost 20 years ago. We initially identified the 35-day period orbital solution using high-resolution infrared spectroscopy that angularly resolved the A and B components. We then refined the preliminary orbit by combining the infrared data with a reanalysis of our high-resolution optical spectroscopy. The orbital period from the combined spectroscopic solution is similar to 35 days, the eccentricity is similar to 0.63, and the mass ratio is similar to 0.84; although this high mass ratio would suggest that optical spectroscopy alone should be sufficient to identify the orbital solution, the presence of the tertiary B component likely introduced confusion in the blended optical spectra. Using millimeter imaging from the literature, we also estimate the inclinations of the stellar orbital planes with respect to the TWA 3A circumbinary disk inclination and find that all three planes are likely misaligned by at least similar to 30 degrees. The TWA 3A spectroscopic binary components have spectral types of M4.0 and M4.5; TWA 3B is an M3. We speculate that the system formed as a triple, is bound, and that its properties were shaped by dynamical interactions between the inclined orbits and disk. 2017-08-03 Article The TWA 3 Young Triple System: Orbits, Disks, Evolution 2017, 844 (2):168 The Astrophysical Journal 1538-4357 10.3847/1538-4357/aa7c60 http://hdl.handle.net/10150/625499 http://arizona.openrepository.com/arizona/handle/10150/625499 The Astrophysical Journal en http://stacks.iop.org/0004-637X/844/i=2/a=168?key=crossref.570a8b969db9ac6657b634e76178b9a7 © 2017. The American Astronomical Society. All rights reserved. IOP PUBLISHING LTD
collection NDLTD
language en
sources NDLTD
topic binaries: spectroscopic
binaries: visual
circumstellar matter
stars: individual (TWA 3)
spellingShingle binaries: spectroscopic
binaries: visual
circumstellar matter
stars: individual (TWA 3)
Kellogg, Kendra
Prato, L.
Torres, Guillermo
Schaefer, G. H.
Avilez, I.
Ruíz-Rodríguez, D.
Wasserman, L. H.
Bonanos, Alceste Z.
Guenther, E. W.
Neuhäuser, R.
Levine, S. E.
Bosh, A. S.
Morzinski, Katie M.
Close, Laird
Bailey, Vanessa
Hinz, Phil
Males, Jared R.
The TWA 3 Young Triple System: Orbits, Disks, Evolution
description We have characterized the spectroscopic orbit of the TWA 3A binary and provide preliminary families of probable solutions for the TWA 3A visual orbit, as well as for the wide TWA 3A-B orbit. TWA 3 is a hierarchical triple located at 34 pc in the similar to 10 Myr old TW Hya association. The wide component separation is 1."55; the close pair was first identified as a possible binary almost 20 years ago. We initially identified the 35-day period orbital solution using high-resolution infrared spectroscopy that angularly resolved the A and B components. We then refined the preliminary orbit by combining the infrared data with a reanalysis of our high-resolution optical spectroscopy. The orbital period from the combined spectroscopic solution is similar to 35 days, the eccentricity is similar to 0.63, and the mass ratio is similar to 0.84; although this high mass ratio would suggest that optical spectroscopy alone should be sufficient to identify the orbital solution, the presence of the tertiary B component likely introduced confusion in the blended optical spectra. Using millimeter imaging from the literature, we also estimate the inclinations of the stellar orbital planes with respect to the TWA 3A circumbinary disk inclination and find that all three planes are likely misaligned by at least similar to 30 degrees. The TWA 3A spectroscopic binary components have spectral types of M4.0 and M4.5; TWA 3B is an M3. We speculate that the system formed as a triple, is bound, and that its properties were shaped by dynamical interactions between the inclined orbits and disk.
author2 Univ Arizona, Steward Observ
author_facet Univ Arizona, Steward Observ
Kellogg, Kendra
Prato, L.
Torres, Guillermo
Schaefer, G. H.
Avilez, I.
Ruíz-Rodríguez, D.
Wasserman, L. H.
Bonanos, Alceste Z.
Guenther, E. W.
Neuhäuser, R.
Levine, S. E.
Bosh, A. S.
Morzinski, Katie M.
Close, Laird
Bailey, Vanessa
Hinz, Phil
Males, Jared R.
author Kellogg, Kendra
Prato, L.
Torres, Guillermo
Schaefer, G. H.
Avilez, I.
Ruíz-Rodríguez, D.
Wasserman, L. H.
Bonanos, Alceste Z.
Guenther, E. W.
Neuhäuser, R.
Levine, S. E.
Bosh, A. S.
Morzinski, Katie M.
Close, Laird
Bailey, Vanessa
Hinz, Phil
Males, Jared R.
author_sort Kellogg, Kendra
title The TWA 3 Young Triple System: Orbits, Disks, Evolution
title_short The TWA 3 Young Triple System: Orbits, Disks, Evolution
title_full The TWA 3 Young Triple System: Orbits, Disks, Evolution
title_fullStr The TWA 3 Young Triple System: Orbits, Disks, Evolution
title_full_unstemmed The TWA 3 Young Triple System: Orbits, Disks, Evolution
title_sort twa 3 young triple system: orbits, disks, evolution
publisher IOP PUBLISHING LTD
publishDate 2017
url http://hdl.handle.net/10150/625499
http://arizona.openrepository.com/arizona/handle/10150/625499
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