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The Shape and Virial Theorem of a Star Cluster in the Galactic Tidal Force Field KCI 등재 SCOPUS

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천문학회지 (Journal of The Korean Astronomical Society)
한국천문학회 (Korean Astronomical Society)
초록

On the instantaneous tidal relaxation approximation, formulae are derived for the ellipticities and virial theorem of a slightly flattened homogeneous rotating cluster (the largest axis of the cluster is directed towards the Galactic center), in terms of the Galactic tidal force and the characteristic intrinsic plus orbital angular velocity. The expression for a purely tidally-determined ellipticity is identical to that for an incompressible fluid body of uniform density. Orbital motion generally contributes significantly to the shape of the cluster. The virial theorem is identical to that for an isolated cluster except that the gravitational potential energy is multiplied by (1- χ ), where χ is a positive tidal correction term. To obtain the actual mass of a cluster, the virial theorem mass based on an isolated cluster should be multiplied by the factor 1/(1- χ ). The formulae are applied to open star clusters, the globular cluster ω Centauri, and dwarf elliptical galaxies in the Local Group.

목차
Abstract
Ⅰ. INTRODUCTION
Ⅱ. SHAPE OF A ROTATING CLUSTER IN THE GALACTIC TIDAL FORCE FIELD
Ⅲ. VIRIAL THEOREM FOR A CLUSTER IN THE GALACTIC TIDAL FORCE FIELD
Ⅳ. APPLICATIONS
Ⅴ. CONCLUSION
REFERENCES
저자
  • See-Woo Lee(Department of Earth Science, Kyungpook National University)
  • Herbert J. Rood(Van Vleck Observatory, Wesleyan University)