We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near a two-dimensional electron gas (2DEG) defined at a GaAs/AlxGa1-xAs heterojunction. We have compared the energy-level spacing within the quantum dot obtained by two methods: from the magnetic-field-induced gate-voltage shifts of the conductance peaks, and by applying a source-drain voltage across the dot. The use of the latter method in a magnetic field allows us to distinguish between charging and confinement effects, although the structure in the nonlinear excitation spectrum requires careful interpretation. As the number of electrons in the dot decreases, the barriers connecting the dot to the 2DEG thicken and the area of the dot decreases,...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
We have studied the transport properties of a semiconductor quantum dot with steep walls in the Coul...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied the single-electron transport spectrum of a quantum dot in GaAs/AlGaAs resonant tunn...
We have studied the single-electron transport spectrum of a quantum dot in GaAs∕AlGaAs resonant tunn...
We have studied the single-electron transport spectrum of a quantum dot in GaAs∕AlGaAs resonant tunn...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
We have studied the transport properties of a semiconductor quantum dot with steep walls in the Coul...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied Coulomb-blockade effects through a quantum dot formed by an impurity potential near ...
We have studied the single-electron transport spectrum of a quantum dot in GaAs/AlGaAs resonant tunn...
We have studied the single-electron transport spectrum of a quantum dot in GaAs∕AlGaAs resonant tunn...
We have studied the single-electron transport spectrum of a quantum dot in GaAs∕AlGaAs resonant tunn...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
We have studied the transport properties of a semiconductor quantum dot with steep walls in the Coul...