International audienceWe propose a scheme for a quantum thermal machine made by atoms interacting with a single non equilibrium electromagnetic field. The field is produced by a simple configuration of macroscopic objects held at thermal equilibrium at different temperatures.We show that these machines can deliver all thermodynamic tasks (cooling, heating, and population inversion) by establishing quantum coherence with the body on which they act. Remarkably, this system allows these machines to reach efficiencies at maximum power very close to the Carnot limit, which is much more than in existing models. Our findings offer a paradigm for efficient quantum energy flux management, and can be relevant for both experimental and technological p...
The concept of a quantum heat engine (QHEN) has been discussed in the literature, not only due to it...
We present a methodology to simulate the quantum thermodynamics of thermal machines which are built ...
Quantum physics revolutionized classical disciplines of mechanics, statistical physics, and electrod...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
We present here a quantum Carnot engine in which the atoms in the heat bath are given a small bit of...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceWe analyze the power output of a quantum dot machine coupled to two electronic...
We propose the use of a quantum thermal machine for low-temperature thermometry. A hot thermal reser...
VK: Low Temperature LaboratoryWe study stochastic energetic exchanges in quantum heat engines. Due t...
Owing to the ubiquity of synchronization in the classical world, it is interesting to study its beha...
A simple urn model is presented that may describe heat engines employing as working agents spin-1/2 ...
International audienceWe discuss a simple quantum thermal machine for the generation of steady-state...
The concept of a quantum heat engine (QHEN) has been discussed in the literature, not only due to it...
We present a methodology to simulate the quantum thermodynamics of thermal machines which are built ...
Quantum physics revolutionized classical disciplines of mechanics, statistical physics, and electrod...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
We present here a quantum Carnot engine in which the atoms in the heat bath are given a small bit of...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceWe analyze the power output of a quantum dot machine coupled to two electronic...
We propose the use of a quantum thermal machine for low-temperature thermometry. A hot thermal reser...
VK: Low Temperature LaboratoryWe study stochastic energetic exchanges in quantum heat engines. Due t...
Owing to the ubiquity of synchronization in the classical world, it is interesting to study its beha...
A simple urn model is presented that may describe heat engines employing as working agents spin-1/2 ...
International audienceWe discuss a simple quantum thermal machine for the generation of steady-state...
The concept of a quantum heat engine (QHEN) has been discussed in the literature, not only due to it...
We present a methodology to simulate the quantum thermodynamics of thermal machines which are built ...
Quantum physics revolutionized classical disciplines of mechanics, statistical physics, and electrod...