Simultaneous Multiwavelength Observations of Magnetic Activity in Ultracool Dwarfs. IV. The Active, Young Binary NLTT 33370 AB (=2MASS J13142039+1320011)
P. K. G. Williams (1), E. Berger (1), J. Irwin (1), Z. K., Berta-Thompson (2), D. Charbonneau (1) ((1) Harvard, (2) MIT Kavli Institute)

TL;DR
This study presents multiwavelength observations of the ultracool dwarf binary NLTT 33370 AB, revealing extreme magnetic activity, complex variability, and multiple emission components, advancing understanding of magnetic phenomena in low-mass stellar systems.
Contribution
It provides the first comprehensive multiwavelength analysis of NLTT 33370 AB, highlighting its extreme magnetic activity and complex emission behaviors, and discusses implications for stellar parameters.
Findings
NLTT 33370 AB is the most radio-luminous ultracool dwarf known.
The system exhibits two close but distinct optical periodicities.
Multiple radio emission components, including flares and gyrosynchrotron emission, are detected.
Abstract
We present multi-epoch simultaneous radio, optical, H{\alpha}, UV, and X-ray observations of the active, young, low-mass binary NLTT 33370 AB (blended spectral type M7e). This system is remarkable for its extreme levels of magnetic activity: it is the most radio-luminous ultracool dwarf (UCD) known, and here we show that it is also one of the most X-ray luminous UCDs known. We detect the system in all bands and find a complex phenomenology of both flaring and periodic variability. Analysis of the optical light curve reveals the simultaneous presence of two periodicities, 3.7859 0.0001 and 3.7130 0.0002 hr. While these differ by only ~2%, studies of differential rotation in the UCD regime suggest that it cannot be responsible for the two signals. The system's radio emission consists of at least three components: rapid 100% polarized flares, bright emission modulating…
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