Quantum interference effects for a mesoscopic loop with three leads are investigated by using a one-dimensional quantum waveguide theory. The transmission and reflection probabilities are analytically obtained in terms of the magnetic flux, arm length, and wave vector. Oscillation of the magnetoconductance is explicitly demonstrated. Magnetoconductance is found to be sharply peaked for certain localized values of flux and kl. In addition, it is noticed that the periodicity of the transmission probability with respect to kl depends more sensitively on the lead position, compared to the case of the two-lead loop.X117sciescopu
A quantum waveguide theory is proposed for hole transport in the mesoscopic structures, including th...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
We designed a device consisting of two concentric quantum rings in a GaAs/AlGaAs heterostructure. Th...
A one-dimensional quantum waveguide theory for mesoscopic structures is proposed, and the boundary c...
We investigate the electron transmission through a structure of serial mesoscopic metallic rings cou...
We have investigated the magnetoconductance of a normal metal loop connected to ideal wires in the p...
We study spin-polarized transport through an Aharonov-Bohm ring threaded by magnetic flux, which is ...
We study spin-polarized transport through an Aharonov-Bohm ring threaded by magnetic flux, which is ...
Abstract We investigate quantum interference effects in a double-Aharonov-Bohm (AB) interferometer c...
We designed a device consisting of two concentric quantum rings in a GaAsAlGaAs heterostructure. The...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
We calculate the oscillations of the dc conductance across a mesoscopic ring, simultaneously tuned b...
We calculate how the Aharonov-Bohm transmission oscillations of a cavity formed by two quantum point...
We calculate the oscillations of the dc conductance across a mesoscopic ring, simultaneously tuned b...
Spin-dependent conductance of ballistic mesoscopic interferometer is investigated. The quantum inter...
A quantum waveguide theory is proposed for hole transport in the mesoscopic structures, including th...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
We designed a device consisting of two concentric quantum rings in a GaAs/AlGaAs heterostructure. Th...
A one-dimensional quantum waveguide theory for mesoscopic structures is proposed, and the boundary c...
We investigate the electron transmission through a structure of serial mesoscopic metallic rings cou...
We have investigated the magnetoconductance of a normal metal loop connected to ideal wires in the p...
We study spin-polarized transport through an Aharonov-Bohm ring threaded by magnetic flux, which is ...
We study spin-polarized transport through an Aharonov-Bohm ring threaded by magnetic flux, which is ...
Abstract We investigate quantum interference effects in a double-Aharonov-Bohm (AB) interferometer c...
We designed a device consisting of two concentric quantum rings in a GaAsAlGaAs heterostructure. The...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
We calculate the oscillations of the dc conductance across a mesoscopic ring, simultaneously tuned b...
We calculate how the Aharonov-Bohm transmission oscillations of a cavity formed by two quantum point...
We calculate the oscillations of the dc conductance across a mesoscopic ring, simultaneously tuned b...
Spin-dependent conductance of ballistic mesoscopic interferometer is investigated. The quantum inter...
A quantum waveguide theory is proposed for hole transport in the mesoscopic structures, including th...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
We designed a device consisting of two concentric quantum rings in a GaAs/AlGaAs heterostructure. Th...