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Magnetoresistance in the extreme quantum limit: field-induced crossover to the unitarity limit
Shuto Tago1,2, Akiyoshi Yamada1,2, Yuki Fuseya1,2
1Department of Physics, Kobe University, Kobe 657-8501, Japan.
Abstract:
We theoretically investigate magnetoresistance (MR) in the extreme quantum limit (EQL), where the kinetic energy becomes significantly smaller than the cyclotron energy, using the Kubo formula with Green's functions and theT-matrix approximation. We uncover a magnetic-field-induced crossover in the scattering rate:1/τ∝B2in the Born regime and1/τ∝B-2in the unitarity limit. This crossover gives rise to distinct MR behaviors in the EQL, characterized by linear transverse MR (ρxx∝B) and negative longitudinal MR (ρzz∝B-2). This dichotomy implies insulating behavior when the magnetic field is perpendicular to the current, and metallic behavior when it is parallel. In the unitarity limit, we further derive a universal relation that enables direct experimental determination of the impurity density fromρxxandρxy. Our results establish a quantum-classical correspondence that remains valid even in the EQL, provided that the field dependences of the scattering rate and quantum corrections are properly incorporated.
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