We investigate the effect of local electron correlations on transport through parallel quantum dots. The linear conductance as a function of gate voltage is strongly affected by the interplay of the interaction U and quantum interference. We find a pair of novel correlation-induced resonances separated by an energy scale that depends exponentially on U. The effect is robust against a small detuning of the dot energy levels and occurs for arbitrary generic tunnel couplings. It should be observable in experiments on the basis of presently existing double-dot setups
We study the electron momentum relaxation in single and vertically coupled quantum dots due to coupl...
We study the electron momentum relaxation in single and vertically coupled quantum dots due to coupl...
We address the problem of the entanglement generationin an electron-scattering by a 1D double-barrie...
We investigate the effect of local electron correlations on transport through parallel quantum dots....
We study the influence of electron correlations on nonequilibrium transport through the quantum dots...
The large, level-dependent g factors in an InSb nanowire quantum dot allow for the occurrence of a v...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
The conductance of two interacting dots connected to leads is studied. The configuration is such tha...
The large, level-dependent g factors in an InSb nanowire quantum dot allow for the occurrence of a v...
We theoretically investigate transport signatures of quantum interference in highly symmetric double...
We have studied the equilibrium and nonequilibrium electronic transports through a double quantum do...
The transport properties of a system of two interacting dots, one of them directly connected to the ...
The impact of electron-phonon interaction on the coherent transport through a quantum dot stack is i...
Spin-dependent electronic transport through two coupled single-level quantum dots attached to ferrom...
We study the electron momentum relaxation in single and vertically coupled quantum dots due to coupl...
We study the electron momentum relaxation in single and vertically coupled quantum dots due to coupl...
We address the problem of the entanglement generationin an electron-scattering by a 1D double-barrie...
We investigate the effect of local electron correlations on transport through parallel quantum dots....
We study the influence of electron correlations on nonequilibrium transport through the quantum dots...
The large, level-dependent g factors in an InSb nanowire quantum dot allow for the occurrence of a v...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
The conductance of two interacting dots connected to leads is studied. The configuration is such tha...
The large, level-dependent g factors in an InSb nanowire quantum dot allow for the occurrence of a v...
We theoretically investigate transport signatures of quantum interference in highly symmetric double...
We have studied the equilibrium and nonequilibrium electronic transports through a double quantum do...
The transport properties of a system of two interacting dots, one of them directly connected to the ...
The impact of electron-phonon interaction on the coherent transport through a quantum dot stack is i...
Spin-dependent electronic transport through two coupled single-level quantum dots attached to ferrom...
We study the electron momentum relaxation in single and vertically coupled quantum dots due to coupl...
We study the electron momentum relaxation in single and vertically coupled quantum dots due to coupl...
We address the problem of the entanglement generationin an electron-scattering by a 1D double-barrie...