[eng] Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the relationship between the size of the machine (captured by Hilbert space dimension) and the performance of the machine. Using the concepts of virtual qubits and virtual temperatures, we show that higher dimensional machines can outperform smaller ones. For instance, by considering refrigerators with more levels, lower temperatures can be achieved, as well as higher power. We discuss the optimal design for refrigerators of a given dimension. As a consequence we obtain a statement of the third law in terms of Hilbert space dimension: Reaching absolute zero temperature requires infinite dimension. These results demonstrate that Hilbert space dimens...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
Quantum thermodynamics often deals with the dynamics of small quantum machines interfacing with a la...
Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the relation...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
A quantum thermal machine is an open quantum system that enables the conversion between heat and wor...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
The purpose of this thesis is to design and analyze a new class of quantum thermal machines. The mac...
In this article, we show that a quantum gas, a collection of massive, non-interacting, indistinguish...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
The performance enhancements observed in various models of continuous quantum thermal machines have ...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
Quantum thermodynamics often deals with the dynamics of small quantum machines interfacing with a la...
Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the relation...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
A quantum thermal machine is an open quantum system that enables the conversion between heat and wor...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
The purpose of this thesis is to design and analyze a new class of quantum thermal machines. The mac...
In this article, we show that a quantum gas, a collection of massive, non-interacting, indistinguish...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
The performance enhancements observed in various models of continuous quantum thermal machines have ...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
Quantum thermodynamics often deals with the dynamics of small quantum machines interfacing with a la...