Recovery of quantized ballistic conductance in a periodically modulated channel
Manhua Leng, Craig S. Lent
Abstract
Manhua Leng, Craig S. Lent
Abstract
For a periodically modulated electron channel, conductance quantization characteristic of a simple quantum point contact is recovered. The value of the quantized conductance is, however, no longer a monotonically increasing function of energy. Comparison with the band structure of the corresponding infinite channel shows a direct correspondence between the index of the conductance plateau and the number of positive-velocity bands at a given energy. The results persist in the presence of an applied magnetic field and lead to a prediction of nonmonotonic steps in the integer quantum Hall resistance for such structures.
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For a periodically modulated electron channel, conductance quantization characteristic of a simple quantum point contact is recovered. The value of the quantized conductance is, however, no longer a monotonically increasing function of energy. Comparison with the band structure of the corresponding infinite channel shows a direct correspondence between the index of the conductance plateau and the number of positive-velocity bands at a given energy. The results persist in the presence of an applied magnetic field and lead to a prediction of nonmonotonic steps in the integer quantum Hall resistance for such structures.
Key concepts: Conductance, Conductance quantum, Quantum point contact, Quantization (signal processing), Ballistic conduction, Physics, Condensed matter physics, Quantum Hall effect