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arxiv: 1208.6033 · v2 · pith:LQO53Y4Bnew · submitted 2012-08-29 · ❄️ cond-mat.stat-mech · physics.chem-ph

Local order parameters for use in driving homogeneous ice nucleation with all-atom models of water

classification ❄️ cond-mat.stat-mech physics.chem-ph
keywords waterall-atommodelsnucleationordercapabledrivinggrowth
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We present a local order parameter based on the standard Steinhardt-Ten Wolde approach that is capable both of tracking and of driving homogeneous ice nucleation in simulations of all-atom models of water. We demonstrate that it is capable of forcing the growth of ice nuclei in supercooled liquid water simulated using the TIP4P/2005 model using overbiassed umbrella sampling Monte Carlo simulations. However, even with such an order parameter, the dynamics of ice growth in deeply supercooled liquid water in all-atom models of water are shown to be very slow, and so the computation of free energy landscapes and nucleation rates remains extremely challenging.

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