TY - JOUR
T1 - Modulation of bilayer quantum Hall states by tilted-field-induced subband-Landau-level coupling
AU - Kumada, N.
AU - Iwata, K.
AU - Tagashira, K.
AU - Shimoda, Y.
AU - Muraki, K.
AU - Hirayama, Y.
AU - Sawada, A.
PY - 2008/4/24
Y1 - 2008/4/24
N2 - We study effects of tilted magnetic fields on energy levels in a double-quantum-well (DQW) system, focusing on the coupling of subbands and Landau levels (LLs). The subband-LL coupling induces anticrossings between LLs directly manifested in the magnetoresistance. The anticrossing gap becomes larger than the spin splitting at the tilting angle θ∼20° and larger than the cyclotron energy at θ∼50°, demonstrating that the subband-LL coupling exerts a strong influence on quantum Hall states even at a relatively small θ and plays a dominant role for larger θ. We also find that when the DQW potential is asymmetric, LL coupling occurs even within a subband. Calculations including higher-order coupling reproduce the experimental results quantitatively well.
AB - We study effects of tilted magnetic fields on energy levels in a double-quantum-well (DQW) system, focusing on the coupling of subbands and Landau levels (LLs). The subband-LL coupling induces anticrossings between LLs directly manifested in the magnetoresistance. The anticrossing gap becomes larger than the spin splitting at the tilting angle θ∼20° and larger than the cyclotron energy at θ∼50°, demonstrating that the subband-LL coupling exerts a strong influence on quantum Hall states even at a relatively small θ and plays a dominant role for larger θ. We also find that when the DQW potential is asymmetric, LL coupling occurs even within a subband. Calculations including higher-order coupling reproduce the experimental results quantitatively well.
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U2 - 10.1103/PhysRevB.77.155324
DO - 10.1103/PhysRevB.77.155324
M3 - Article
AN - SCOPUS:42649126029
VL - 77
JO - Physical Review B - Condensed Matter and Materials Physics
JF - Physical Review B - Condensed Matter and Materials Physics
SN - 0163-1829
IS - 15
M1 - 155324
ER -