Short-time behaviour of the two-dimensional hard-disk model
arXiv:cond-mat/9903327 · doi:10.1016/S0378-4371(99)00483-5
Abstract
Starting from the ordered state, we investigate the short-time behaviour of the hard-disk model. For the positional order, we determine the critical exponents eta and z from the dynamic relaxation of the order parameter and the cumulant with molecular dynamics simulations. The results are compared with previous Monte Carlo (MC) simulations. The bond orientational order is studied with MC dynamics.
11 pages, 4 figures
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- Corrections to Scaling for the Two-dimensional Dynamic XY Model
- Direct test of defect mediated laser induced melting theory for two dimensional solids
- Monte Carlo Simulations of Short-time Critical Dynamics with a Conserved Quantity
- A numerical renormalization group study of laser induced freezing
- Stress relaxation in a perfect nanocrystal by coherent ejection of lattice layers
- Electrical transport in deformed nanostrips: electrical signature of reversible mechanical failure
- Novel Fluctuations at a Constrained Liquid-Solid Interface