Production, detection, storage and release of spin currents

Quantum rings connected to ballistic circuits couple strongly to external magnetic fields if the connection is not symmetric. Moreover, properly connected rings can be used to pump currents in the wires giving raise to a number of interesting new phenomena. At half filling using a time-dependent mag...

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Veröffentlicht in:Beilstein journal of nanotechnology 2015-03, Vol.6 (1), p.736-743
1. Verfasser: Cini, Michele
Format: Artikel
Sprache:eng
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Zusammenfassung:Quantum rings connected to ballistic circuits couple strongly to external magnetic fields if the connection is not symmetric. Moreover, properly connected rings can be used to pump currents in the wires giving raise to a number of interesting new phenomena. At half filling using a time-dependent magnetic field in the plane of the ring one can pump a pure spin current, excited by the the spin-orbit interaction in the ring. Such a magnetic current is even under time reversal and produces an electric field instead of the usual magnetic field. Numerical simulations show that one can use magnetizable bodies as storage units to concentrate and save the magnetization in much the same way as capacitors operating with charge currents store electric charge. The polarization obtained in this way can then be used on command to produce spin currents in a wire. These currents show interesting oscillations while the storage units exchange their polarizations. The magnetic production of spin currents can be a useful alternative to optical excitation and electric field methods.
ISSN:2190-4286
2190-4286
DOI:10.3762/bjnano.6.75