We report the inclusion of phonon scattering to our recently established numerical package QmeQ for transport in quantum dot systems. This enables straightforward calculations for a large variety of devices. As examples we show (i) transport in a double-dot structure, where energy relaxation is crucial to match the energy difference between the levels, and (ii) the generation of electrical power by contacting cold electric contacts with quantum dot states, which are subjected to heated phonons
Using moving quantum dots defined by surface acoustic waves that allow us to observe correlated elec...
We study thermoelectric transport through a serial double quantum dot (DQD) coupled to two metallic ...
Although the study of thermal transport in condensed matter has a very long history, it continues t...
We report the inclusion of phonon scattering to our recently established numerical package QmeQ for ...
We investigate the effect of vibrational degrees of freedom on the linear thermoelectric transport t...
In this article we review aspects of charge and heat transport in interacting quantum dots and molec...
We employ the functional renormalization group to study the effects of phonon-assisted tunneling on ...
Studies of thermally induced transport in nanostructures provide access to an exciting regime where ...
In this thesis, we study the effect of phonon-assisted tunneling on the thermoelectric transport thr...
The electron-phonon interaction has important effects on the nonequilibrium transport through the se...
We present a Green's function based treatment of the effects of electron-phonon coupling on transpor...
During the last few decades research has improved our knowledge and control over electrons and photo...
In this paper, we investigate the quantum transport of a double quantum dot coupled with a...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
Tutor: Raúl Toral.The main goal of this thesis is to study the quantum transport of quantum dot syst...
Using moving quantum dots defined by surface acoustic waves that allow us to observe correlated elec...
We study thermoelectric transport through a serial double quantum dot (DQD) coupled to two metallic ...
Although the study of thermal transport in condensed matter has a very long history, it continues t...
We report the inclusion of phonon scattering to our recently established numerical package QmeQ for ...
We investigate the effect of vibrational degrees of freedom on the linear thermoelectric transport t...
In this article we review aspects of charge and heat transport in interacting quantum dots and molec...
We employ the functional renormalization group to study the effects of phonon-assisted tunneling on ...
Studies of thermally induced transport in nanostructures provide access to an exciting regime where ...
In this thesis, we study the effect of phonon-assisted tunneling on the thermoelectric transport thr...
The electron-phonon interaction has important effects on the nonequilibrium transport through the se...
We present a Green's function based treatment of the effects of electron-phonon coupling on transpor...
During the last few decades research has improved our knowledge and control over electrons and photo...
In this paper, we investigate the quantum transport of a double quantum dot coupled with a...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
Tutor: Raúl Toral.The main goal of this thesis is to study the quantum transport of quantum dot syst...
Using moving quantum dots defined by surface acoustic waves that allow us to observe correlated elec...
We study thermoelectric transport through a serial double quantum dot (DQD) coupled to two metallic ...
Although the study of thermal transport in condensed matter has a very long history, it continues t...