The High-Order-Multiplicity of Unusually Wide M-dwarf Binaries: Eleven New Triple and Quadruple Systems
Nicholas M. Law, Saurav Dhital, Adam L. Kraus, Keivan G. Stassun,, Andrew A. West

TL;DR
This study investigates the multiplicity of extremely wide M-dwarf binaries, discovering new triple and quadruple systems, and analyzes their formation and stability, revealing a high fraction of high-order multiples and dependencies on system separation.
Contribution
The paper presents the first systematic search for close companions in a sample of wide M-dwarf binaries, discovering new multiple systems and analyzing their statistical properties and formation implications.
Findings
Discovered 10 new triple and 1 quadruple systems.
Bias-corrected high-order-multiple fraction is approximately 45%.
Widest systems show a higher fraction of high-order multiples.
Abstract
M-dwarfs in extremely wide binary systems are very rare, and may thus have different formation processes from those found as single stars or close binaries in the field. In this paper we search for close companions to a new sample of 36 extremely wide M-dwarf binaries, covering a spectral type range of M1 to M5 and a separation range of 600 - 6500 AU. We discover 10 new triple systems and one new quadruple system. We carefully account for selection effects including proper motion, magnitude limits, the detection of close binaries in the SDSS, and other sample biases. The bias-corrected total high-order-multiple fraction is 45% (+18%/-16%) and the bias-corrected incidence of quadruple systems is < 5%, both statistically compatible with that found for the more common close M-dwarf multiple systems. Almost all the detected companions have similar masses to their primaries, although two…
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