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    Moving-mesh simulations of minicommon envelope ejection in classical novae

    Nicholas Nelson* and Philip Chang†

    • *Contact author: nelso843@uwm.edu
    • †Contact author: chang65@uwm.edu

    Phys. Rev. D 113, 123023 – Published 9 June, 2026

    DOI: https://doi.org/10.1103/jfbv-4lhm

    Abstract

    Although well studied, our understanding of the mass ejection mechanisms of cataclysmic variables remains incomplete. Recent work suggests that binary interaction plays an important role in driving and shaping this mass ejection and may affect the long-term evolution of the system. In this paper, we perform a three-dimensional moving-mesh hydrodynamic simulation of a cataclysmic variable system to study the effect of binary interaction on mass ejection. We find that once the flow crosses the L1 Lagrange point, the material is ejected roughly isotropically. This can be seen in a roughly spherical distribution of the ejecta at large radii. We also show that the L2 Lagrange point is not important in the ejection of mass, contrary to the assumption in some previous work in this area. Finally, we find that the specific angular momentum of the ejected material is larger than its initial specific angular momentum. This enhanced angular momentum ejection likely affects the long-term evolution of the binary system.

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