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Angular Momentum Changes Due to Direct Impact Accretion in a Simplified Binary System

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arxiv 1009.1167 v3 pith:LW2EY42V submitted 2010-09-06 astro-ph.SR

Angular Momentum Changes Due to Direct Impact Accretion in a Simplified Binary System

classification astro-ph.SR
keywords angularmomentumbinarydirectimpactmasssystemtransfer
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We model a circular mass-transferring binary system to calculate the exchange of angular momentum between stellar spins and the orbit due to direct impact of the mass transfer stream onto the surface of the accretor. We simulate mass transfer by calculating the ballistic motion of a point mass ejected from the $L_1$ point of the donor star, conserving the total linear and angular momentum of the system, and treating the stars as uniform density spheres with main sequence radii determined by their masses. We show that, contrary to previous assumptions in the literature, direct impact does not always act as a sink of orbital angular momentum and may in fact increase it by facilitating the transfer of angular momentum from the spin of the donor to the orbit. Here, we show an example of the exchange of angular momentum, as well as a measure of the orbital angular momentum changes for a variety of binary star systems with main sequence components.

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