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Singularity free algorithm for molecular dynamics simulation of rigid polyatomics

Molecular Physics · 1977 · Vol. 34(2) · pp. 327–331
Denis J. EvansSohail Murad

Abstract

Using a transformation of the rigid body equations of motion due to Evans [4], a new algorithm is presented for the molecular dynamics simulation of rigid polyatomic molecules. The algorithm consists of solving the eulerian rigid body equations, using quaternions to represent orientations, by a fifth-order predictor corrector method. Compared to previous methods, it is shown that this algorithm leads to an order of magnitude increase in computing speed.

Quantum chaos and dynamical systemsNumerical methods for differential equationsGas Dynamics and Kinetic TheoryQuaternionRigid bodyMolecular dynamicsSingularityEulerian pathRigid body dynamicsClassical mechanicsPolyatomic ionTransformation (genetics)Equations of motion
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References
Liquid argon: Monte carlo and molecular dynamics calculations
Molecular Physics · 1971 · 620 citations
On the representatation of orientation space
Molecular Physics · 1977 · 420 citations
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