Tracing the Origins of Mass Segregation in M35: Evidence for Primordially Segregated Binaries

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Main Authors: Motherway, Erin, Geller, Aaron M., Childs, Anna C., Zwicker, Claire, von Hippel, Ted
Format: Preprint
Published: 2023
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author Motherway, Erin
Geller, Aaron M.
Childs, Anna C.
Zwicker, Claire
von Hippel, Ted
author_facet Motherway, Erin
Geller, Aaron M.
Childs, Anna C.
Zwicker, Claire
von Hippel, Ted
contents M35 is a young open cluster and home to an extensive binary population. Using Gaia DR3, Pan-STARRS, and 2MASS photometry with the Bayesian statistical software, BASE-9, we derive precise cluster parameters, identify single and binary cluster members, and extract their masses. We identify 571 binaries down to Gaia G = 20.3 and a lower-limit on the binary frequency of f_b = 0.41 +/- 0.02. We extend the binary demographics by many magnitudes faint-ward of previous (radial-velocity) studies of this cluster and further away from the cluster center (1.78-degrees, roughly 10 core radii). We find the binary stars to be more centrally concentrated than the single stars in the cluster. Furthermore, we find strong evidence for mass segregation within the binary population itself, with progressively more massive binary samples becoming more and more centrally concentrated. For the single stars, we find weaker evidence for mass segregation; only the most massive single stars (> 2.5MSun) appear more centrally concentrated. Given the cluster age of ~200 Myr, and our derived half-mass relaxation time for the cluster of 230 +/- 84 Myr, we estimate ~47% of the binary stars and ~12% of single stars in the cluster have had time to become dynamically mass segregated. Importantly, when we investigate only stars with mass segregation timescales greater than the cluster age, we still find the binaries to be more centrally concentrated than the singles, suggesting the binaries may have formed with a primordially different spatial distribution than the single stars.
format Preprint
id arxiv_https___arxiv_org_abs_2308_13520
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Tracing the Origins of Mass Segregation in M35: Evidence for Primordially Segregated Binaries
Motherway, Erin
Geller, Aaron M.
Childs, Anna C.
Zwicker, Claire
von Hippel, Ted
Solar and Stellar Astrophysics
M35 is a young open cluster and home to an extensive binary population. Using Gaia DR3, Pan-STARRS, and 2MASS photometry with the Bayesian statistical software, BASE-9, we derive precise cluster parameters, identify single and binary cluster members, and extract their masses. We identify 571 binaries down to Gaia G = 20.3 and a lower-limit on the binary frequency of f_b = 0.41 +/- 0.02. We extend the binary demographics by many magnitudes faint-ward of previous (radial-velocity) studies of this cluster and further away from the cluster center (1.78-degrees, roughly 10 core radii). We find the binary stars to be more centrally concentrated than the single stars in the cluster. Furthermore, we find strong evidence for mass segregation within the binary population itself, with progressively more massive binary samples becoming more and more centrally concentrated. For the single stars, we find weaker evidence for mass segregation; only the most massive single stars (> 2.5MSun) appear more centrally concentrated. Given the cluster age of ~200 Myr, and our derived half-mass relaxation time for the cluster of 230 +/- 84 Myr, we estimate ~47% of the binary stars and ~12% of single stars in the cluster have had time to become dynamically mass segregated. Importantly, when we investigate only stars with mass segregation timescales greater than the cluster age, we still find the binaries to be more centrally concentrated than the singles, suggesting the binaries may have formed with a primordially different spatial distribution than the single stars.
title Tracing the Origins of Mass Segregation in M35: Evidence for Primordially Segregated Binaries
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2308.13520