In 1980 Andersen introduced the use of extended system as a means of exploring by molecular dynamics simulation the phase space of a physical model according to a desired ensemble distribution different from the standard microcanonical function. Following his original work on constant pressure-constant enthalpy a large number of different equations of motion, not directly derivable from a Hamiltonian, have been proposed in recent years, the most notable of which is the so-called Nose-Hoover formulation for canonical molecular dynamics simulation. Using a generalization of the symplectic form of the Hamilton equations of motion we show here that there is a unique general structure that underlies most, if not all the equations of motion for.,...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Nosé–Hoover thermostat...
We show that Nos'e's thermostat can be given a mechanical formulation (with Hamiltonian ha...
Nose's Hamiltonian mechanics makes possible the efficient simulation of irreversible flows of mass, ...
In 1980 Andersen introduced the use of extended system as a means of exploring by molecular dynamics...
The use of non-Hamiltonian dynamical systems to perform molecular dynamics simulation studies is bec...
In the present work we introduce a simple, Nose-Hoover style isothermal-isobaric molecular dynamics ...
In the present work we introduce a simple, Nose-Hoover style isothermal-isobaric molecular dynamics ...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Nose-Hoover thermostat...
A dynamical system submitted to holonomic constraints is Hamiltonian only if considered in the reduc...
A dynamical system submitted to holonomic constraints is Hamiltonian only if considered in the reduc...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Nose barostat, which g...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Noseacute barostat, wh...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Noseacute barostat, wh...
This is the publisher's version, also available electronically from http://journals.aps.org/pre/abst...
This is the publisher's version, also available electronically from http://journals.aps.org/pre/abst...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Nosé–Hoover thermostat...
We show that Nos'e's thermostat can be given a mechanical formulation (with Hamiltonian ha...
Nose's Hamiltonian mechanics makes possible the efficient simulation of irreversible flows of mass, ...
In 1980 Andersen introduced the use of extended system as a means of exploring by molecular dynamics...
The use of non-Hamiltonian dynamical systems to perform molecular dynamics simulation studies is bec...
In the present work we introduce a simple, Nose-Hoover style isothermal-isobaric molecular dynamics ...
In the present work we introduce a simple, Nose-Hoover style isothermal-isobaric molecular dynamics ...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Nose-Hoover thermostat...
A dynamical system submitted to holonomic constraints is Hamiltonian only if considered in the reduc...
A dynamical system submitted to holonomic constraints is Hamiltonian only if considered in the reduc...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Nose barostat, which g...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Noseacute barostat, wh...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Noseacute barostat, wh...
This is the publisher's version, also available electronically from http://journals.aps.org/pre/abst...
This is the publisher's version, also available electronically from http://journals.aps.org/pre/abst...
In this work, we employ a Hamiltonian-based procedure to derive a generalized Nosé–Hoover thermostat...
We show that Nos'e's thermostat can be given a mechanical formulation (with Hamiltonian ha...
Nose's Hamiltonian mechanics makes possible the efficient simulation of irreversible flows of mass, ...