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Energy, Momentum and Angular Momentum Transfer Between Electrons and Nuclei

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arxiv 1908.04077 v2 pith:BVTPVKKE submitted 2019-08-12 physics.chem-ph

Energy, Momentum and Angular Momentum Transfer Between Electrons and Nuclei

classification physics.chem-ph
keywords effectiveidentitiesmomentumenergyfieldnucleisubsystemtransfer
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The recently developed exact factorization approach condenses all electronic effects on the nuclear subsystem into scalar and vector potentials that appear in an effective time dependent Schr\"{o}dinger equation. Starting from this equation, we derive subsystem Ehrenfest identities characterizing the energy, momentum and angular momentum transfer between electrons and nuclei. An effective electromagnetic force operator induced by the electromagnetic field corresponding to the effective scalar and vector potentials appears in all three identities. The effective magnetic field has two components that can be identified with the Berry curvature calculated with (a) different cartesian coordinates of the same nucleus and (b) arbitrary cartesian coordinates of two different nuclei. (a) has a classical interpretation as the induced magnetic field felt by the nucleus, while (b) has no classical analog. Subsystem Ehrenfest identities are ideally suited for quantifying energy transfer in electron-phonon systems. With two explicit examples we demonstrate the usefulness of the new identities.

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