4.7 Article

The local axisymmetric instability criterion in a thin, rotating, multicomponent disc

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OXFORD UNIV PRESS
DOI: 10.1046/j.1365-8711.2001.04201.x

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stars : kinematics; ISM : kinematics and dynamics; Galaxy : evolution; Galaxy : kinematics and dynamics; solar neighbourhood

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Purely gravitational perturbations are considered in a thin rotating disc composed of gas and several stellar components. The dispersion relation for the axisymmetric density waves propagating through the disc is found and the criterion for the local axisymmetric stability of the whole system is formulated. In the appropriate limit of two-component gas we confirm the findings of Jog & Solomon and extend consideration to the case when one component is collisionless. Gravitational stability of the Galactic disc in the solar neighbourhood based on the multicomponent instability condition is explored using recent measurements of the stellar composition and kinematics in the local Galactic disc obtained by the Hipparcos satellite.

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