English

Validity of Molecular Dynamics Simulations for Soft Matter

Computational Physics 2015-06-12 v1 Soft Condensed Matter Statistical Mechanics

Abstract

In this work, we analytically examine the validity of molecular dynamics for a soft potential system by considering a simple one-dimensional system with a piecewise continuous linear repulsive potential wall having a constant slope aa. We derive an explicit analytical expression for an inevitable energy change ΔE\Delta E due to the discrete process, which is dependent on two parameters: 1) α\alpha, which is a fraction of time step τ\tau immediately after the collision with the potential wall, and 2) μaτp0\mu \equiv \frac{a \tau}{p_0}, where p0p_0 is the momentum immediately before the collision. The whole space of parameters α\alpha and μ\mu can be divided into an infinite number of regions, where each region creates a positive or negative energy change ΔE\Delta E. On the boundaries of these regions, energy does not change, \textit{i.e}, ΔE=0\Delta E=0. The envelope of ΔE|\Delta E| \textit{vs.} μ\mu shows a power law behavior ΔEμβ|\Delta E| \propto \mu^\beta, with the exponent β0.95\beta \approx 0.95. This implies that the round-off error in energy introduced by the discreteness is nearly proportional to the discrete time step τ\tau.

Keywords

Cite

@article{arxiv.1301.2768,
  title  = {Validity of Molecular Dynamics Simulations for Soft Matter},
  author = {Sangrak Kim},
  journal= {arXiv preprint arXiv:1301.2768},
  year   = {2015}
}

Comments

4 pages, 5 figures

R2 v1 2026-06-21T23:08:27.868Z