Periodically driven quantum dots can act as counterparts of cyclic thermal machines at the nanoscale. In the slow-driving regime of geometric pumping, such machines have been shown to operate in analogy to a Carnot cycle. For larger driving frequencies, which are required in order to increase the cooling power, the efficiency of the operation decreases. Up to which frequency a close-to-optimal performance is still possible depends on the magnitude and sign of on-site electron-electron interaction. Extending our previous detailed study on cyclic quantum-dot refrigerators [Phys. Rev. B 106, 035405 (2022)], we here find that the optimal cooling power remains constant up to weak interaction strength compared to the cold-bath temperature. By con...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
Including phonon-assisted inelastic process in thermoelectric devices is able to enhance the perform...
This thesis studies the nonequilibrium properties of quantum dots with regard to electrical conducti...
Periodically driven quantum dots can act as counterparts of cyclic thermal machines at the nanoscale...
We study geometric energy transport in a slowly driven single-level quantum dot weakly coupled to el...
We study the relation between quantum pumping of charge and the work exchanged with the driving pote...
We analyze the power output of a quantum dot machine coupled to two electronic reservoirs via thermo...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
In this thesis I study the thermoelectric properties of a multilevel interacting quantum dot weakly ...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
peer reviewedWe describe a single-level quantum dot in contact with two leads as a nanoscale finite-...
We analyze the transient response of quantum dot thermal machines that can be driven by hyperfine in...
We study the linear and nonlinear thermovoltage of a quantum dot with effective attractive electron-...
In this work, we study the efficiency of charging a quantum battery through optical pumping. The bat...
We demonstrate gate control of electronic heat flow in a thermally biased single-quantum-dot junctio...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
Including phonon-assisted inelastic process in thermoelectric devices is able to enhance the perform...
This thesis studies the nonequilibrium properties of quantum dots with regard to electrical conducti...
Periodically driven quantum dots can act as counterparts of cyclic thermal machines at the nanoscale...
We study geometric energy transport in a slowly driven single-level quantum dot weakly coupled to el...
We study the relation between quantum pumping of charge and the work exchanged with the driving pote...
We analyze the power output of a quantum dot machine coupled to two electronic reservoirs via thermo...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
In this thesis I study the thermoelectric properties of a multilevel interacting quantum dot weakly ...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
peer reviewedWe describe a single-level quantum dot in contact with two leads as a nanoscale finite-...
We analyze the transient response of quantum dot thermal machines that can be driven by hyperfine in...
We study the linear and nonlinear thermovoltage of a quantum dot with effective attractive electron-...
In this work, we study the efficiency of charging a quantum battery through optical pumping. The bat...
We demonstrate gate control of electronic heat flow in a thermally biased single-quantum-dot junctio...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
Including phonon-assisted inelastic process in thermoelectric devices is able to enhance the perform...
This thesis studies the nonequilibrium properties of quantum dots with regard to electrical conducti...