Mesoscopic spin-Hall effect in 2D electron systems with smooth boundaries

Update Item Information
Publication Type Journal Article
School or College College of Science
Department Physics
Creator Mishchenko, Eugene
Other Author Silvestrov, P. G.; Zyuzin, V. A.
Title Mesoscopic spin-Hall effect in 2D electron systems with smooth boundaries
Date 2009-05
Description The spin-Hall effect in a ballistic 2D electron gas with Rashba-type spin-orbit coupling and smooth edge confinement is studied. We predict that the interplay of semiclassical electron motion and quantum dynamics of spins leads to several distinct features in spin density along the edge that originate from the accumulation of turning points from many classical trajectories. A strong peak is found near a point of the vanishing of electron Fermi velocity in the lower spin-split subband. It is followed by a strip of negative spin density that extends until the crossing of the local Fermi energy with the degeneracy point where the two spin subbands intersect. Beyond this crossing there is a wide region of a smooth positive spin density. The total amount of spin accumulated in each of these features exceeds greatly the net spin across the entire edge. The features become more pronounced for shallower boundary potentials.
Type Text
Publisher American Physical Society
Journal Title Physical Review Letters
Volume 102
Issue 19
DOI 10.1103/PhysRevLett.102.196802
citatation_issn 0031-9007
Subject Spin- Hall effect; 2D electron systems
Subject LCSH Hall effect; Nuclear spin
Language eng
Bibliographic Citation Silvestrov, P. G., Zyuzin, V. A., & Mishchenko, E. G. (2009). Mesoscopic spin-Hall effect in 2D electron systems with smooth boundaries. Physical Review Letters, 102(19), 196802.
Rights Management (c) American Physical Society http://dx.doi.org/10.1103/PhysRevLett.102.196802
Format Medium application/pdf
Format Extent 398,880 bytes
Identifier ir-main,11777
ARK ark:/87278/s6r508dr
Setname ir_uspace
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Reference URL https://collections.lib.utah.edu/ark:/87278/s6r508dr
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