The First Millimeter Detection of a Non-Accreting Ultracool Dwarf
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Author
Casewell, S. L.
Stark, C. R.
Littlefair, S. P.
Helling, Ch.
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https://doi.org/10.1088/0004-637x/815/1/64Metadata
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Williams, P. K. G., S. L. Casewell, C. R. Stark, S. P. Littlefair, Ch. Helling, and E. Berger. 2015. The First Millimeter Detection of a Non-Accreting Ultracool Dwarf. The Astrophysical Journal 815, no. 1: 64. doi:10.1088/0004-637x/815/1/64.Abstract
The well-studied M9 dwarf TVLM 513–46546 is a rapid rotator (Prot ∼ 2 hr) hosting a stable, dipolar magnetic field of ∼3 kG surface strength. Here we report its detection with ALMA at 95 GHz at a mean flux density of 56 ± 12 µJy, making it the first ultracool dwarf detected in the millimeter band, excluding young, disk-bearing objects. We also report flux density measurements from unpublished archival VLA data and new optical monitoring data from the Liverpool Telescope. The ALMA data are consistent with a power-law radio spectrum that extends continuously between centimeter and millimeter wavelengths. We argue that the emission is due to the synchrotron process, excluding thermal, free-free, and electron cyclotron maser emission as possible sources. During the interval of the ALMA observation that phases with the maximum of the object’s optical variability, the flux density is higher at a ∼1.8σ significance level. These early results show how ALMA opens a new window for studying the magnetic activity of ultracool dwarfs, particularly shedding light on the particle acceleration mechanism operating in their immediate surroundings.Other Sources
https://arxiv.org/abs/1511.05559Terms of Use
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