We study geometric energy transport in a slowly driven single-level quantum dot weakly coupled to electronic contacts and with strong on-site interaction, which can be either repulsive or attractive. Exploiting a recently discovered fermionic duality for the evolution operator of the master equation, we provide compact and insightful analytic expressions of energy pumping curvatures for any pair of driving parameters. This enables us to systematically identify and explain the pumping mechanisms for different driving schemes, thereby also comparing energy and charge pumping. We determine the concrete impact of many-body interactions and show how particle-hole symmetry and fermionic duality manifest, both individually and in combination, as s...
In this thesis I study the thermoelectric properties of a multilevel interacting quantum dot weakly ...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
We propose a minimal model of a Coulomb coupled fermionic quantum dot thermal diode that can act as ...
We study geometric energy transport in a slowly driven single-level quantum dot weakly coupled to el...
Periodically driven quantum dots can act as counterparts of cyclic thermal machines at the nanoscale...
Periodically driven quantum dots can act as counterparts of cyclic thermal machines at the nanoscale...
We analyze time-dependent transport through a quantum dot with electron-electron interaction that is...
This thesis studies the nonequilibrium properties of quantum dots with regard to electrical conducti...
We study the linear and nonlinear thermovoltage of a quantum dot with effective attractive electron-...
The tunneling Hamiltonian describes a particle transfer from one region to another. Although there i...
We analyze the power output of a quantum dot machine coupled to two electronic reservoirs via thermo...
We study the relation between quantum pumping of charge and the work exchanged with the driving pote...
peer reviewedWe describe a single-level quantum dot in contact with two leads as a nanoscale finite-...
One of the most important technological inventions during the last century was the transistor, which...
Electronic charge and heat flows can be separated in three-terminal conductors. Two terminals suppor...
In this thesis I study the thermoelectric properties of a multilevel interacting quantum dot weakly ...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
We propose a minimal model of a Coulomb coupled fermionic quantum dot thermal diode that can act as ...
We study geometric energy transport in a slowly driven single-level quantum dot weakly coupled to el...
Periodically driven quantum dots can act as counterparts of cyclic thermal machines at the nanoscale...
Periodically driven quantum dots can act as counterparts of cyclic thermal machines at the nanoscale...
We analyze time-dependent transport through a quantum dot with electron-electron interaction that is...
This thesis studies the nonequilibrium properties of quantum dots with regard to electrical conducti...
We study the linear and nonlinear thermovoltage of a quantum dot with effective attractive electron-...
The tunneling Hamiltonian describes a particle transfer from one region to another. Although there i...
We analyze the power output of a quantum dot machine coupled to two electronic reservoirs via thermo...
We study the relation between quantum pumping of charge and the work exchanged with the driving pote...
peer reviewedWe describe a single-level quantum dot in contact with two leads as a nanoscale finite-...
One of the most important technological inventions during the last century was the transistor, which...
Electronic charge and heat flows can be separated in three-terminal conductors. Two terminals suppor...
In this thesis I study the thermoelectric properties of a multilevel interacting quantum dot weakly ...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
We propose a minimal model of a Coulomb coupled fermionic quantum dot thermal diode that can act as ...