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September 8, 2010The Astrophysical Journal57 citationsOpen Access

Correcting Velocity Dispersions of Dwarf Spheroidal Galaxies for Binary Orbital Motion

QMQuinn E. MinorGMGregory D. MartinezJBJames S. Bullock

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Abstract

We show that the measured velocity dispersions of dwarf spheroidal galaxies from about 4 to 10 km s^ (–1) are unlikely to be inflated by more than 30% due to the orbital motion of binary stars and demonstrate that the intrinsic velocity dispersions can be determined to within a few percent accuracy using two-epoch observations with 1-2 yr as the optimal time interval. The crucial observable is the threshold fraction—the fraction of stars that show velocity changes larger than a given threshold between measurements. The threshold fraction is tightly correlated with the dispersion introduced by binaries, independent of the underlying binary fraction and distribution of orbital parameters. We outline a simple procedure to correct the velocity dispersion to within a few percent accuracy by using the threshold fraction and provide fitting functions for this method. We also develop a methodology for constraining properties of binary populations from both single- and two-epoch velocity measurements by including the binary velocity distribution in a Bayesian analysis.

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Cite This Study

Minor et al. (2010) studied this question.

synapsesocial.com/papers/6a21852cbd959c3a83abd642https://doi.org/10.1088/0004-637x/721/2/1142
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