Rights statement: © 1997 The American Physical Society
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Research output: Contribution to Journal/Magazine › Journal article › peer-review
Research output: Contribution to Journal/Magazine › Journal article › peer-review
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TY - JOUR
T1 - Observation of the local structure of Landau bands in a disordered conductor
AU - Schmidt, T.
AU - Haug, R. J.
AU - Falko, Vladimir
AU - von Klitzing, K.
AU - Förster, A.
AU - Lüth, H.
N1 - © 1997 The American Physical Society
PY - 1997/2/24
Y1 - 1997/2/24
N2 - The local density of states of heavily doped GaAs is explored at high magnetic fields, where only a single or few Landau bands are occupied. Our experiment is based on resonant tunneling through impurity states and images the local density of states both below and above the Fermi level. Fan-type mesoscopic fluctuations are observed in the energy-magnetic-field plane, which we attribute to the interplay of Landau quantization and quantum interference of scattered electron waves in the disordered conductor. Our conclusion is supported by the suppression of the fluctuations high above the Fermi level, where dephasing due to inelastic processes is as fast as elastic scattering.
AB - The local density of states of heavily doped GaAs is explored at high magnetic fields, where only a single or few Landau bands are occupied. Our experiment is based on resonant tunneling through impurity states and images the local density of states both below and above the Fermi level. Fan-type mesoscopic fluctuations are observed in the energy-magnetic-field plane, which we attribute to the interplay of Landau quantization and quantum interference of scattered electron waves in the disordered conductor. Our conclusion is supported by the suppression of the fluctuations high above the Fermi level, where dephasing due to inelastic processes is as fast as elastic scattering.
U2 - 10.1103/PhysRevLett.78.1540
DO - 10.1103/PhysRevLett.78.1540
M3 - Journal article
VL - 78
SP - 1540
EP - 1543
JO - Physical review letters
JF - Physical review letters
SN - 1079-7114
IS - 8
ER -