arXiv · 0904.1518
Resonant tunneling-based spin ratchets
Abstract
We outline a generic ratchet mechanism for creating directed spin-polarized currents in ac-driven double well or double dot structures by employing resonant spin transfer through the system engineered by local external magnetic fields. We show its applicability to semiconductor nanostructures by considering coherent transport through two coupled lateral quantum dots, where the energy levels of the two dots exhibit opposite Zeeman spin splitting. We perform numerical quantum mechanical calculations for the I-V characteristics of this system in the nonlinear regime, which requires a self-consistent treatment of the charge redistribution due to the applied finite bias. We show that this setting enables nonzero averaged net spin currents in the absence of net charge transport.
Explore related subjects
Keep this discovery
Matthias Scheid, Andreas Lassl, Klaus Richter. 2009-04-09. Resonant tunneling-based spin ratchets. https://doi.org/10.1209/0295-5075%2F87%2F17001
Cite the original work for its findings. Save a collection to share your selection of sources.