Abstract We propose to use a few-qubit system as a compact quantum refrigerator for cooling an interacting multi-qubit system. We specifically consider a central qubit coupled to N ancilla qubits in a so-called spin-star model to be used as refrigerant by means of short interactions with a many-qubit system to be cooled. We first show that if the interaction between the qubits is of the longitudinal and ferromagnetic Ising model form, the central qubit is colder than the environment. We summarize how preparing the refrigerant qubits using the spin-star model paves the way for the cooling of a many-qubit system by means of a collisional route to thermalization. We discuss a simple refrigeration cycle, considering the operation cost and cooli...
Small self-contained quantum thermal machines function without external source of work or control bu...
The novel cycle model of a three-quantum-dot cooler, which possesses three Fermi reservoirs connecte...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...
Small quantum absorption refrigerators have recently attracted renewed attention. Here we present a ...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
We propose a model of a quantum thermal refrigeration machine interacting with an external atom via ...
We report on a quantum thermodynamic method to purify a qubit on a quantum processing unit (QPU) equ...
Cooling quantum systems is arguably one of the most important thermodynamic tasks connected to moder...
We present a theoretical study of an electronic quantum refrigerator based on four quantum dots arra...
We explore the possibility of enhancing the performance of small thermal machines by the presence of...
A small quantum absorption refrigerator, consisting of three qubits, is discussed in the transient r...
A single qutrit with transitions selectively driven by weakly-coupled reservoirs can implement one o...
The purpose of this thesis is to design and analyze a new class of quantum thermal machines. The mac...
The four-level entangled quantum refrigerator (QR) is studied in the XXZ Heisenberg model for the tw...
We demonstrate that a quantum absorption refrigerator (QAR) can be realized from the smallest quantu...
Small self-contained quantum thermal machines function without external source of work or control bu...
The novel cycle model of a three-quantum-dot cooler, which possesses three Fermi reservoirs connecte...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...
Small quantum absorption refrigerators have recently attracted renewed attention. Here we present a ...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
We propose a model of a quantum thermal refrigeration machine interacting with an external atom via ...
We report on a quantum thermodynamic method to purify a qubit on a quantum processing unit (QPU) equ...
Cooling quantum systems is arguably one of the most important thermodynamic tasks connected to moder...
We present a theoretical study of an electronic quantum refrigerator based on four quantum dots arra...
We explore the possibility of enhancing the performance of small thermal machines by the presence of...
A small quantum absorption refrigerator, consisting of three qubits, is discussed in the transient r...
A single qutrit with transitions selectively driven by weakly-coupled reservoirs can implement one o...
The purpose of this thesis is to design and analyze a new class of quantum thermal machines. The mac...
The four-level entangled quantum refrigerator (QR) is studied in the XXZ Heisenberg model for the tw...
We demonstrate that a quantum absorption refrigerator (QAR) can be realized from the smallest quantu...
Small self-contained quantum thermal machines function without external source of work or control bu...
The novel cycle model of a three-quantum-dot cooler, which possesses three Fermi reservoirs connecte...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...