We introduce two new thermostats, one of Langevin type and one of gradient (Brownian) type, for rigid body dynamics. We formulate rotation using the quaternion representation of angular coordinates; both thermostats preserve the unit length of quaternions. The Langevin thermostat also ensures that the conjugate angular momenta stay within the tangent space of the quaternion coordinates, as required by the Hamiltonian dynamics of rigid bodies. We have constructed three geometric numerical integrators for the Langevin thermostat and one for the gradient thermostat. The numerical integrators reflect key properties of the thermostats themselves. Namely, they all preserve the unit length of quaternions, automatically, without the need of a proje...
We present an algorithm for performing rigid-body Brownian dynamics that can take into account the h...
This paper invites the reader to learn more about time integrators for Molecular Dynamics simulation...
International audienceSome of the most important geometric integrators for both ordinary and partial...
We introduce two new thermostats, one of Langevin type and one of gradient (Brownian) type, for rigi...
We introduce new Langevin-type equations describing the rotational and translational motion of rigid...
We introduce new Langevin-type equations describing the rotational and translational motion of rigid...
Algorithms for the numerical integration of Langevin equations are compared in detail from the point...
35 pages, 10 figures, submittedInternational audienceWe propose to use the properties of the Lie alg...
In rigid body dynamic simulations, often the algorithm is required to deal with general situations w...
The main idea of a geometric integrator is to adopt a geometric viewpoint of the problem and to cons...
The paper is concerned with coordinate representations for rigid parts in multibody dynamics. The di...
Thermostats are dynamical equations used to model thermodynamic variables such as temperature and pr...
Langevin dynamics is a versatile stochastic model used in biology, chemistry, engineering, physics a...
We present an algorithm for performing rigid-body Brownian dynamics that can take into account the h...
This paper invites the reader to learn more about time integrators for Molecular Dynamics simulation...
International audienceSome of the most important geometric integrators for both ordinary and partial...
We introduce two new thermostats, one of Langevin type and one of gradient (Brownian) type, for rigi...
We introduce new Langevin-type equations describing the rotational and translational motion of rigid...
We introduce new Langevin-type equations describing the rotational and translational motion of rigid...
Algorithms for the numerical integration of Langevin equations are compared in detail from the point...
35 pages, 10 figures, submittedInternational audienceWe propose to use the properties of the Lie alg...
In rigid body dynamic simulations, often the algorithm is required to deal with general situations w...
The main idea of a geometric integrator is to adopt a geometric viewpoint of the problem and to cons...
The paper is concerned with coordinate representations for rigid parts in multibody dynamics. The di...
Thermostats are dynamical equations used to model thermodynamic variables such as temperature and pr...
Langevin dynamics is a versatile stochastic model used in biology, chemistry, engineering, physics a...
We present an algorithm for performing rigid-body Brownian dynamics that can take into account the h...
This paper invites the reader to learn more about time integrators for Molecular Dynamics simulation...
International audienceSome of the most important geometric integrators for both ordinary and partial...