Coherent Transport Through a Quantum Dot Embedded in a Double-Slit-Like Aharonov-Bohm Ring
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Abstract
Coherent transport through a quantum dot embedded in one arm of a double-slit-like Aharonov-Bohm (AB) ring is studied using the Green's function approach. We obtain experimental observations such as continuous phase shift along a single resonance peak and sharp inter-resonance phase drop. The AB oscillations of the differential conductance of the whole device are calculated by using the nonequilibrium Keldysh formalism. It is shown that the oscillating conductance has a continuous bias-voltage-dependent phase shift and is asymmetric in both linear and nonlinear response regime.
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HUANG Li, YOU Jian-Qiang, YAN Xiao-Hong, WEI Shi-Hao. Coherent Transport Through a Quantum Dot Embedded in a Double-Slit-Like Aharonov-Bohm Ring[J]. Chin. Phys. Lett., 2002, 19(10): 1505-1508.
HUANG Li, YOU Jian-Qiang, YAN Xiao-Hong, WEI Shi-Hao. Coherent Transport Through a Quantum Dot Embedded in a Double-Slit-Like Aharonov-Bohm Ring[J]. Chin. Phys. Lett., 2002, 19(10): 1505-1508.
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HUANG Li, YOU Jian-Qiang, YAN Xiao-Hong, WEI Shi-Hao. Coherent Transport Through a Quantum Dot Embedded in a Double-Slit-Like Aharonov-Bohm Ring[J]. Chin. Phys. Lett., 2002, 19(10): 1505-1508.
HUANG Li, YOU Jian-Qiang, YAN Xiao-Hong, WEI Shi-Hao. Coherent Transport Through a Quantum Dot Embedded in a Double-Slit-Like Aharonov-Bohm Ring[J]. Chin. Phys. Lett., 2002, 19(10): 1505-1508.
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