Orbital and physical properties of the $\sigma$ Ori Aa,Ab,B triple system
Sim\'on-D\'iaz, J.A. Caballero, J. Lorenzo, J. Ma\'iz Apell\'aniz,, F.R.N. Schneider, I. Negueruela, R. H. Barb\'a, R. Dorda, A. Marco, D., Montes, A. Pellerin, J. Sanchez-Bermudez, \'A. S\'odor, A. Sota

TL;DR
This study provides a detailed characterization of the $\sigma$ Ori Aa,Ab,B triple system, including orbital parameters, stellar properties, and ages, using spectroscopic data, stellar atmosphere modeling, and Bayesian analysis.
Contribution
It offers the first comprehensive analysis combining orbital, spectroscopic, and evolutionary data for the $\sigma$ Ori triple system, improving understanding of its properties and formation.
Findings
Accurate orbital parameters for the $\sigma$ Ori Aa,Ab pair.
The Aa,Ab pair contains the hottest and most massive stars.
The stellar ages are about 3 million years, younger than the cluster.
Abstract
We provide a complete characterization of the astrophysical properties of the Ori Aa,Ab,B hierarchical triple system, and an improved set of orbital parameters for the highly eccentric Ori Aa,Ab spectroscopic binary. We compiled a spectroscopic dataset comprising 90 high-resolution spectra covering a total time span of 1963 days. We applied the Lehman-Filh\'es method for a detailed orbital analysis of the radial velocity curves and performed a combined quantitative spectroscopic analysis of the { Ori Aa,Ab,B} system by means of the stellar atmosphere code FASTWIND. We used our own plus other available information on photometry and distance to the system for measuring the radii, luminosities, and spectroscopic masses of the three components. We also inferred evolutionary masses and stellar ages using the Bayesian code BONNSAI. The orbital analysis of the new…
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