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Discovery of an edge-on circumstellar debris disk around BD+45° 598: A newly identified member of the β Pictoris Moving Group

Sasha Hinkley, Elisabeth C. Matthews, Charlène Lefevre, Jean-Francois Lestrade, Grant Kennedy, Dimitri Mawet, Karl R. Stapelfeldt, Shrishmoy Ray, Eric Mamajek, Brendan P. Bowler, David Wilner, Jonathan Williams, Megan Ansdell, Mark Wyatt, Alexis Lau, Mark W. Phillips, Jorge Fernandez, Jonathan Gagné, Emma Bubb, Ben J. SutlieffThomas J. G. Wilson, Brenda Matthews, Henry Ngo, Danielle Piskorz, Justin R. Crepp, Erica Gonzalez, Andrew W. Mann, Gregory Mace

Research output: Contribution to journalArticlepeer-review

Abstract

We report the discovery of a circumstellar debris disk viewed nearly edge-on and associated with the young, K1 star BD+45 598 using high-contrast imaging at 2.2 μm obtained at the W.M. Keck Observatory. We detect the disk in scattered light with a peak significance of ∼5σ over three epochs, and our best-fit model of the disk is an almost edge-on ∼70 au ring, with inclination angle ∼87 . Using the NOEMA interferometer at the Plateau de Bure Observatory operating at 1.3 mm, we find resolved continuum emission aligned with the ring structure seen in the 2.2 μm images. We estimate a fractional infrared luminosity of LIR/Ltot ≃\ 6-1+2 x 10-4, higher than that of the debris disk around AU Mic. Several characteristics of BD+45° 598, such as its galactic space motion, placement in a color-magnitude diagram, and strong presence of lithium, are all consistent with its membership in the β Pictoris Moving Group with an age of 23 ± 3 Myr. However, the galactic position for BD+45° 598 is slightly discrepant from previously known members of the β Pictoris Moving Group, possibly indicating an extension of members of this moving group to distances of at least 70 pc. BD+45° 598 appears to be an example from a population of young circumstellar debris systems associated with newly identified members of young moving groups that can be imaged in scattered light, key objects for mapping out the early evolution of planetary systems from ∼10-100 Myr. This target will also be ideal for northern-hemisphere, high-contrast imaging platforms to search for self-luminous, planetary mass companions residing in this system.

Original languageEnglish
Article number115
Pages (from-to)1-11
Number of pages11
JournalAstrophysical Journal
Volume912
Issue number2
DOIs
Publication statusPublished - 10 May 2021
Externally publishedYes

Bibliographical note

© 2021. The American Astronomical Society. All rights reserved. Version archived for private and non-commercial use with the permission of the author/s and according to publisher conditions. For further rights please contact the publisher.

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