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ASKAP Detection of Periodic and Elliptically Polarized Radio Pulses from UV Ceti

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arxiv 1906.06570 v1 pith:QIXKZDZU submitted 2019-06-15 astro-ph.SR

ASKAP Detection of Periodic and Elliptically Polarized Radio Pulses from UV Ceti

classification astro-ph.SR
keywords activeactivityaskapceticoherentm-dwarfsstarsauroral
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Active M-dwarfs are known to produce bursty radio emission, and multi-wavelength studies have shown that Solar-like magnetic activity occurs in these stars. However, coherent bursts from active M-dwarfs have often been difficult to interpret in the Solar activity paradigm. We present Australian Square Array Pathfinder (ASKAP) observations of UV Ceti at a central frequency of 888 MHz. We detect several periodic, coherent pulses occurring over a timescale consistent with the rotational period of UV Ceti. The properties of the pulsed emission show that they originate from the electron cyclotron maser instability, in a cavity $\sim7$ orders of magnitude less dense than the mean coronal density at the estimated source altitude. These results confirm that auroral activity can occur in active M-dwarfs, suggesting that these stars mark the beginning of the transition from Solar-like to auroral magnetospheric behaviour. These results demonstrate the capabilities of ASKAP for detecting polarized, coherent bursts from active stars and other systems.

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Cited by 2 Pith papers

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  1. Discovery of a radio-flaring M dwarf in a commensal transient search of the LADUMA field

    astro-ph.SR 2026-07 accept novelty 6.0

    MeerKAT LADUMA monitoring reveals a radio-flaring M3.5 dwarf, LP 888-63, with 13 detections in 41 epochs at 816 MHz.

  2. Upper Limits on Planet-Induced GHz Radio Emission from Inactive M Dwarfs

    astro-ph.EP 2026-06 unverdicted novelty 4.0

    No bursty planet-induced radio emission detected from five inactive M dwarfs; upper limits constrain GJ 367 b magnetosphere to <0.8 G under assumed stellar wind conditions.