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Observation of magnetic breakdown in double quantum wells
Authors:N.E. Harff  J.A. Simmons  J.F. Klem  G.S. Boebinger  L.N. Pfeiffer  K.W. West
Affiliation:aSandia National Laboratories, Albuquerque, NM 87185, U.S.A.;bLucent Technologies, Murray Hill, NJ 07974, U.S.A.
Abstract:
We report on our studies of magnetic breakdown (MB) in coupled GaAs/Al0.3Ga0.7As double quantum wells (DQWs) subject to crossed magnetic fields. MB is a failure of semiclassical theory that occurs when a magnetic field causes electrons to tunnel across a gap ink-space from one Fermi surface (FS) branch to another. We study MB in a two-branch FS created by subjecting a DQW to an in-plane magnetic field (B). The principal effect ofBis a distortion in the dispersion curve of the system, yielding a FS consisting of two components, a lens-shaped inner orbit and an hour-glass-shaped outer orbit. The perpendicular field (B) causes Landau level formation and Shubnikov–de Haas (SdH) oscillations for each branch of the FS. At higher perpendicular fields MB occurs and electrons tunnel throughk-space from one FS orbit to the other. MB is observed by noting which peaks are present in the Fourier power spectrum of the magnetoresistance versus 1/Bat constantB. We observe MB in two DQW samples over a range ofB.
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