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Crystal nucleation rates in one-component Yukawa systems

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arxiv 2503.05902 v1 pith:WGHCBKCP submitted 2025-03-07 physics.plasm-ph astro-ph.SRcond-mat.stat-mech

classification physics.plasm-phastro-ph.SRcond-mat.stat-mech
keywords nucleationyukawacrystalcrystallizationhomogeneousobtainquantitativeresults
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abstract

Nucleation in the supercooled Yukawa system is relevant for addressing current challenges in understanding a range of crystallizing systems including white dwarf (WD) stars. We use both brute force and seeded molecular dynamics simulations to study homogeneous nucleation of crystals from supercooled Yukawa liquids. With our improved approach to seeded simulations, we obtain quantitative predictions of the crystal nucleation rate and cluster size distributions as a function of temperature and screening length. These quantitative results show trends towards fast nucleation with short-ranged potentials. They also indicate that for temperatures $T > 0.9T_m$, where $T_m$ is the melt temperature, classical homogeneous nucleation is too slow to initiate crystallization but transient clusters of around 100 particles should be common. We apply these general results to a typical WD model and obtain a delay of approximately 0.6 Gyr in the onset of crystallization that may be observable.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Constraining shear modulus of polycrystalline neutron star crust: Hashin-Shtrikman variational approach

    astro-ph.HE 2025-07 accept novelty 6.0 of 10

    Hashin-Shtrikman variational bounds show that the effective shear modulus of a polycrystalline neutron star crust is lower than the commonly assumed Voigt value, with narrower upper and lower limits.

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