Polarised radio pulsations from a new T dwarf binary
Abstract
Brown dwarfs display Jupiter-like auroral phenomena such as magnetospheric H emission and coherent radio emission. Coherent radio emission is a probe of magnetospheric acceleration mechanisms and provides a direct measurement of the magnetic field strength at the emitter's location, both of which are difficult to access by other means. Observations of the coldest brown dwarfs (spectral types T and Y) are particularly interesting as their magnetospheric phenomena may be very similar to those in gas-giant exoplanets. Here we present 144 MHz radio and infrared adaptive optics observations of the brown dwarf WISEP J101905.63+652954.2 made using the LOFAR and Keck telescopes respectively. The radio data shows pulsed highly circularly polarised emission which yields a rotation rate of hr. The infrared imaging reveals the source to be a binary with a projected separation of mas between components of spectral type T5. and T7.. With a simple "toy model" we show that the radio emission can in principle be powered by the interaction between the two dwarfs with a mass-loss rates of at least times the Jovian value. WISEP J101905.63+652954.2 is interesting because it is the first pulsed methane dwarf detected in a low radio-frequency search. Unlike previous gigahertz-frequency searches that were only sensitive to objects with kiloGauss fields, our low-frequency search is sensitive to surface magnetic fields of Gauss and above which might reveal the coldest radio-loud objects down to planetary mass-scales.
Keywords
Cite
@article{arxiv.2301.01003,
title = {Polarised radio pulsations from a new T dwarf binary},
author = {H. K. Vedantham and Trent J. Dupuy and E. L. Evans and A. Sanghi and J. R. Callingham and T. W. Shimwell and W. M. J. Best and M. C. Liu and P. Zarka},
journal= {arXiv preprint arXiv:2301.01003},
year = {2023}
}
Comments
Accepted for publication in A&A