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The Semiclassical Initial Value Representation:  A Potentially Practical Way for Adding Quantum Effects to Classical Molecular Dynamics Simulations

The Journal of Physical Chemistry A · 2001 · Vol. 105(13) · pp. 2942–2955
William H. Miller

Abstract

The semiclassical (SC) initial value representation (IVR) provides a potentially practical way for adding quantum mechanical effects to classical molecular dynamics (MD) simulations of the dynamics of complex molecular systems (i.e., those with many degrees of freedom). It does this by replacing the nonlinear boundary value problem of semiclassical theory by an average over the initial conditions of classical trajectories. This paper reviews the background and rebirth of interest in such approaches and surveys a variety of their recent applications. Special focus is on the ability to treat the dynamics of complex systems, and in this regard, the forward−backward (FB) version of the approach is especially promising. Several examples of the FB-IVR applied to model problems of many degrees of freedom show it to be capable of describing quantum effects quite well and also how these effects are quenched when some of the degrees of freedom are averaged over ("decoherence").

Quantum chaos and dynamical systemsSpectroscopy and Quantum Chemical StudiesQuantum, superfluid, helium dynamicsSemiclassical physicsDegrees of freedom (physics and chemistry)Quantum decoherenceRepresentation (politics)Statistical physicsQuantumMolecular dynamicsNonlinear systemClassical mechanicsQuantum dynamics
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References
The semiclassical way to molecular spectroscopy
Accounts of Chemical Research · 1981 · 1,478 citations
The Quantum Theory of Optical Coherence
Physical Review · 1963 · 3,931 citations
On the Quantum Correction For Thermodynamic Equilibrium
Physical Review · 1932 · 9,003 citations
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