Nonconservative current-induced forces: A physical interpretation

We give a physical interpretation of the recently demonstrated nonconservative nature of interatomic forces in current-carrying nanostructures. We start from the analytical expression for the curl of these forces, and evaluate it for a point defect in a current-carrying system. We obtain a general d...

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Veröffentlicht in:Beilstein journal of nanotechnology 2011-10, Vol.2 (1), p.727-733
Hauptverfasser: Todorov, Tchavdar N, Dundas, Daniel, Paxton, Anthony T, Horsfield, Andrew P
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Sprache:eng
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Zusammenfassung:We give a physical interpretation of the recently demonstrated nonconservative nature of interatomic forces in current-carrying nanostructures. We start from the analytical expression for the curl of these forces, and evaluate it for a point defect in a current-carrying system. We obtain a general definition of the capacity of electrical current flow to exert a nonconservative force, and thus do net work around closed paths, by a formal noninvasive test procedure. Second, we show that the gain in atomic kinetic energy over time, generated by nonconservative current-induced forces, is equivalent to the uncompensated stimulated emission of directional phonons. This connection with electron-phonon interactions quantifies explicitly the intuitive notion that nonconservative forces work by angular momentum transfer.
ISSN:2190-4286
2190-4286
DOI:10.3762/bjnano.2.79