In this paper we discuss thermostatting using stochastic methods for molecular simulations where constraints are present. For so-called impulsive thermostats, like the Andersen thermostat, the equilibrium temperature will differ significantly from the imposed temperature when a limited number of particles are picked and constraints are applied. We analyze this problem and give two rigorous solutions for it. A correct general treatment of impulsive stochastic thermostatting, including pairwise dissipative particle dynamics and stochastic forcing in the presence of constraints, is given and it is shown that the constrained canonical distribution is sampled rigorously. We discuss implementation issues such as second order Trotter expansions. T...
Dynamical equations describing physical systems in contact with a thermal bath are commonly extended...
We present a Monte Carlo technique for sampling from the canonical distribution in molecular dynamic...
In this paper, we discuss advanced thermostatting techniques for sampling molecular systems in the c...
In this paper we discuss thermostatting using stochastic methods for molecular simulations where con...
In this paper we discuss thermostatting using stochastic methods for molecular simulations where con...
A broad array of canonical sampling methods are available for molecular simulation based on stochast...
A broad array of canonical sampling methods are available for molecular simulation based on stochast...
Abstract. A broad array of canonical sampling methods are available for molecular simulation based o...
We discuss a dynamical technique for sampling the canonical measure in molecular dynamics. We presen...
AbstractWe consider the problem of time-stepping/sampling for molecular and meso-scale particle dyna...
In this article, we present several algorithms for stochastic dynamics, including Langevin dynamics ...
We consider the problem of time-stepping/sampling for molecular and meso-scale particle dynamics. Th...
The authors present a new molecular dynamics algorithm for sampling the canonical distribution. In t...
The path integral molecular dynamics (PIMD) method provides a convenient way to compute the quantum ...
We present a Monte Carlo technique for sampling from the canonical distribution in molecular dynamic...
Dynamical equations describing physical systems in contact with a thermal bath are commonly extended...
We present a Monte Carlo technique for sampling from the canonical distribution in molecular dynamic...
In this paper, we discuss advanced thermostatting techniques for sampling molecular systems in the c...
In this paper we discuss thermostatting using stochastic methods for molecular simulations where con...
In this paper we discuss thermostatting using stochastic methods for molecular simulations where con...
A broad array of canonical sampling methods are available for molecular simulation based on stochast...
A broad array of canonical sampling methods are available for molecular simulation based on stochast...
Abstract. A broad array of canonical sampling methods are available for molecular simulation based o...
We discuss a dynamical technique for sampling the canonical measure in molecular dynamics. We presen...
AbstractWe consider the problem of time-stepping/sampling for molecular and meso-scale particle dyna...
In this article, we present several algorithms for stochastic dynamics, including Langevin dynamics ...
We consider the problem of time-stepping/sampling for molecular and meso-scale particle dynamics. Th...
The authors present a new molecular dynamics algorithm for sampling the canonical distribution. In t...
The path integral molecular dynamics (PIMD) method provides a convenient way to compute the quantum ...
We present a Monte Carlo technique for sampling from the canonical distribution in molecular dynamic...
Dynamical equations describing physical systems in contact with a thermal bath are commonly extended...
We present a Monte Carlo technique for sampling from the canonical distribution in molecular dynamic...
In this paper, we discuss advanced thermostatting techniques for sampling molecular systems in the c...