A survey of the high order multiplicity of nearby solar-type binary stars with Robo-AO
Reed L. Riddle, Andrei Tokovinin, Brian D. Mason, William I. Hartkopf,, Lewis C. Roberts, Jr., Christoph Baranec, Nicholas M. Law, Khanh Bui, Mahesh, P. Burse, H. K. Das, Richard G. Dekany, Shrinivas Kulkarni, Sujit Punnadi, A., N. Ramaprakash, Shriharsh P. Tendulkar

TL;DR
This survey used Robo-AO to analyze the hierarchical structure of nearby solar-type binary stars, revealing a high prevalence of sub-systems and quadruple systems, and providing new insights into their formation mechanisms.
Contribution
It provides the first comprehensive high-resolution survey of hierarchical multiplicity in nearby solar-type binaries, discovering new subsystems and quantifying their frequencies.
Findings
The frequency of secondary sub-systems is approximately 12%.
Half of secondary pairs are part of quadruple systems with correlated sub-systems.
The abundance of 2+2 quadruple systems is a new significant finding.
Abstract
We conducted a survey of nearby binary systems composed of main sequence stars of spectral types F and G in order to improve our understanding of the hierarchical nature of multiple star systems. Using Robo-AO, the first robotic adaptive optics instrument, we collected high angular resolution images with deep and well-defined detection limits in the SDSS band. A total of 695 components belonging to 595 systems were observed. We prioritized observations of faint secondary components with separations over to quantify the still poorly constrained frequency of their sub-systems. Of the 214 secondaries observed, 39 contain such subsystems; 19 of those were discovered with Robo-AO. The selection-corrected frequency of secondary sub-systems with periods from to days is 0.120.03, the same as the frequency of such companions to the primary. Half of the…
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