A noninteracting quantum-dot array side coupled to a quantum wire is studied. Transport through the quantum wire is investigated by using a noninteracting Anderson tunneling Hamiltonian. The conductance at zero temperature develops an oscillating band with resonances and antiresonances due to constructive and destructive interference in the ballistic channel, respectively. Moreover, we have found an odd-even parity in the system, whose conductance vanishes for an odd number of quantum dots while it becomes 2e(2)/h for an even number. We established an explicit relation between this odd-even parity and the positions of the resonances and antiresonances of the conductivity with the spectrum of the isolated quantum-dot array
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We have studied the electron transport through zero-dimensional (0D) states. 0D states are formed wh...
A system of an array of side-coupled quantum dots attached to a quantum wire is studied theoreticall...
A numerical renormalization-group study of the conductance through a quantum wire containing noninte...
A numerical renormalization-group study of the conductance through a quantum wire containing noninte...
The coherent electronic transport in quantum wires with embedded nanostructures is investigated with...
We apply the Hubbard Hamiltonian to describe quantum-dot arrays weakly coupled to two contacts. Exac...
Electronic transport properties of two quantum dots side-coupled to a quantum wire are studied by me...
We apply the Hubbard Hamiltonian to describe quantum-dot arrays weakly coupled to two contacts. Exac...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We propose that recently realized T-shaped semiconductor quantum wires (T wires) could be exploited ...
Nanoscale wires and molecules have remarkable electrical properties that make them well suited for n...
We have studied the electron transport through zero-dimensional (0D) states. 0D states are formed wh...
We have studied the electron transport through zero-dimensional (0D) states. 0D states are formed wh...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We have studied the electron transport through zero-dimensional (0D) states. 0D states are formed wh...
A system of an array of side-coupled quantum dots attached to a quantum wire is studied theoreticall...
A numerical renormalization-group study of the conductance through a quantum wire containing noninte...
A numerical renormalization-group study of the conductance through a quantum wire containing noninte...
The coherent electronic transport in quantum wires with embedded nanostructures is investigated with...
We apply the Hubbard Hamiltonian to describe quantum-dot arrays weakly coupled to two contacts. Exac...
Electronic transport properties of two quantum dots side-coupled to a quantum wire are studied by me...
We apply the Hubbard Hamiltonian to describe quantum-dot arrays weakly coupled to two contacts. Exac...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We propose that recently realized T-shaped semiconductor quantum wires (T wires) could be exploited ...
Nanoscale wires and molecules have remarkable electrical properties that make them well suited for n...
We have studied the electron transport through zero-dimensional (0D) states. 0D states are formed wh...
We have studied the electron transport through zero-dimensional (0D) states. 0D states are formed wh...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We have studied the electron transport through zero-dimensional (0D) states. 0D states are formed wh...