Title of article
Discretization errors in molecular dynamics simulations with deterministic and stochastic thermostats
Author/Authors
Lifeng and Davidchack، نويسنده , , Ruslan L. and Pan، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
24
From page
9323
To page
9346
Abstract
We investigate the influence of numerical discretization errors on computed averages in a molecular dynamics simulation of TIP4P liquid water at 300 K coupled to different deterministic (Nosé–Hoover and Nosé–Poincaré) and stochastic (Langevin) thermostats. We propose a couple of simple practical approaches to estimating such errors and taking them into account when computing the averages. We show that it is possible to obtain accurate measurements of various system quantities using step sizes of up to 70% of the stability threshold of the integrator, which for the system of TIP4P liquid water at 300 K corresponds to the step size of about 7 fs.
Keywords
Radial distribution function , Nosé–Hoover thermostat , Langevin thermostat , Richardson extrapolation , Backward error analysis , Numerical integrator , Configurational temperature , Debye relaxation time , Diffusion coefficient
Journal title
Journal of Computational Physics
Serial Year
2010
Journal title
Journal of Computational Physics
Record number
1483002
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