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26 April 2024
 
  » arxiv » cond-mat/0502191

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Magneto-Gyrotropic Photogalvanic Effects in Semiconductor Quantum Wells
V. V. Bel’kov ; S. D. Ganichev ; E. L. Ivchenko ; S. A. Tarasenko ; W. Weber ; S. Giglberger ; M. Olteanu ; H.-P. Tranitz ; S. N. Danilov ; Petra Schneider ; W. Wegscheider ; D. Weiss ; W. Prettl ;
Date 8 Feb 2005
Subject Mesoscopic Systems and Quantum Hall Effect | cond-mat.mes-hall
Affiliation1 and 2), S. D. Ganichev (1 and 2), E. L. Ivchenko , S. A. Tarasenko , W. Weber , S. Giglberger , M. Olteanu , H.-P. Tranitz , S. N. Danilov , Petra Schneider , W. Wegscheider , D. Weiss , W. Prettl ( University of Regensburg Germany, A.F. Ioffe Phy
AbstractWe show that free-carrier (Drude) absorption of both polarized and unpolarized terahertz radiation in quantum well (QW) structures causes an electric photocurrent in the presence of an in-plane magnetic field. Experimental and theoretical analysis evidences that the observed photocurrents are spin-dependent and related to the gyrotropy of the QWs. Microscopic models for the photogalvanic effects in QWs based on asymmetry of photoexcitation and relaxation processes are proposed. In most of the investigated structures the observed magneto-induced photocurrents are caused by spin-dependent relaxation of non-equilibrium carriers.
Source arXiv, cond-mat/0502191
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