Controlling the temperature of nano-scale quantum systems is becoming increasingly important in the efforts to develop thermal devices such as quantum heat valves, heat engines, and refrigerators, and to explore fundamental concepts in quantum thermodynamics. In practice, however, it is challenging to generate arbitrary time-dependent temperatures, similarly to what has been achieved for electronic voltage pulses. To overcome this problem, we here propose a fully quantum mechanical scheme to control the time-dependent environment temperature of an open quantum system. To this end, we consider a collection of quantum harmonic oscillators that mediate the interactions between the quantum system and a thermal reservoir, and we show how an effe...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
An interesting class of physical systems, including those associated with life, demonstrates the abi...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Funding Information: We acknowledge support from Academy of Finland through the Finnish Centre of Ex...
We consider one harmonic oscillator attached to a bath of many harmonic oscillators. We define a tim...
We consider one harmonic oscillator attached to a bath of many harmonic oscillators. We define a tim...
We develop a general theory describing the thermodynamical behavior of open quantum systems coupled ...
We study a quantum harmonic oscillator undergoing thermalization. To describe the thermalization pro...
A quantum system and a thermal bath can reach thermal equilibrium through an interaction, whereupon ...
In this article we argue that thermal reservoirs (baths) are potentially useful resources in process...
Understanding heat transfer between a quantum system and its environment is of undisputed importance...
Funding Information: We thank M. Moskalets and D. Sánchez for useful discussions and acknowledge sup...
International audienceThe article by Riera-Campeny, Mehboudi, Pons, and Sanpera [Phys. Rev. E 99, 03...
International audienceThe article by Riera-Campeny, Mehboudi, Pons, and Sanpera [Phys. Rev. E 99, 03...
Understanding the thermodynamics of driven quantum systems strongly coupled to thermal baths is a ce...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
An interesting class of physical systems, including those associated with life, demonstrates the abi...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Funding Information: We acknowledge support from Academy of Finland through the Finnish Centre of Ex...
We consider one harmonic oscillator attached to a bath of many harmonic oscillators. We define a tim...
We consider one harmonic oscillator attached to a bath of many harmonic oscillators. We define a tim...
We develop a general theory describing the thermodynamical behavior of open quantum systems coupled ...
We study a quantum harmonic oscillator undergoing thermalization. To describe the thermalization pro...
A quantum system and a thermal bath can reach thermal equilibrium through an interaction, whereupon ...
In this article we argue that thermal reservoirs (baths) are potentially useful resources in process...
Understanding heat transfer between a quantum system and its environment is of undisputed importance...
Funding Information: We thank M. Moskalets and D. Sánchez for useful discussions and acknowledge sup...
International audienceThe article by Riera-Campeny, Mehboudi, Pons, and Sanpera [Phys. Rev. E 99, 03...
International audienceThe article by Riera-Campeny, Mehboudi, Pons, and Sanpera [Phys. Rev. E 99, 03...
Understanding the thermodynamics of driven quantum systems strongly coupled to thermal baths is a ce...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
An interesting class of physical systems, including those associated with life, demonstrates the abi...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...