Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence effects at the nanoscale. Here, we investigate a Cooper-pair splitter setup consisting of two quantum dots, each linearly coupled to a local resonator. The latter can be realized either by a microwave cavity or a nanomechanical resonator. Focusing on the subgap regime, we demonstrate that cross-Andreev reflection, through which Cooper pairs are split into both dots, can efficiently cool down simultaneously both resonators into their ground state. Moreover, we show that a nonlocal heat transfer between the two resonators is activated when opportune resonance conditions are matched. The proposed scheme can act as a heat-pump device with potenti...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
Experiments to probe the basic quantum properties of motional degrees of freedom of mechanical syste...
We investigate the nonclassical states of light that emerge in a microwave resonator coupled to a pe...
Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence ...
In hybrid quantum circuits, different mesoscopic systems can be combined to harness advantages and p...
We propose and analyze a simple mesoscopic quantum heat engine that exhibits both high power and hig...
We study the ground-state cooling of a mechanical oscillator linearly coupled to the charge of a qua...
| openaire: EC/H2020/743884/EU//DiracEntanglerThe electrons forming a Cooper pair in a superconducto...
We investigate the nonlocal thermoelectric transport in a Cooper-pair splitter based on a double-qua...
We simulated the radiative response of the cavity quantum electrodynamics (QED) coupled to the doubl...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
Quantum thermodynamics is emerging both as a topic of fundamental research and as a means to unders...
Coupling double-quantum-dot circuits to microwave cavities provides a powerful means to control, cou...
Preparing mechanical systems in their lowest possible entropy state, the quantum ground state, start...
We propose and analyze the use of hybrid microwave cavities as quantum heat engines. A possible real...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
Experiments to probe the basic quantum properties of motional degrees of freedom of mechanical syste...
We investigate the nonclassical states of light that emerge in a microwave resonator coupled to a pe...
Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence ...
In hybrid quantum circuits, different mesoscopic systems can be combined to harness advantages and p...
We propose and analyze a simple mesoscopic quantum heat engine that exhibits both high power and hig...
We study the ground-state cooling of a mechanical oscillator linearly coupled to the charge of a qua...
| openaire: EC/H2020/743884/EU//DiracEntanglerThe electrons forming a Cooper pair in a superconducto...
We investigate the nonlocal thermoelectric transport in a Cooper-pair splitter based on a double-qua...
We simulated the radiative response of the cavity quantum electrodynamics (QED) coupled to the doubl...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
Quantum thermodynamics is emerging both as a topic of fundamental research and as a means to unders...
Coupling double-quantum-dot circuits to microwave cavities provides a powerful means to control, cou...
Preparing mechanical systems in their lowest possible entropy state, the quantum ground state, start...
We propose and analyze the use of hybrid microwave cavities as quantum heat engines. A possible real...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
Experiments to probe the basic quantum properties of motional degrees of freedom of mechanical syste...
We investigate the nonclassical states of light that emerge in a microwave resonator coupled to a pe...