There are both practical and foundational motivations to consider the thermodynamics of quantum systems at small scales. Here we address the issue of autonomous quantum thermal machines that are tailored to achieve some specific thermodynamic primitive, such as work extraction in the presence of a thermal environment, while having minimal or no control from the macroscopic regime. Beyond experimental implementations, this provides an arena in which to address certain foundational aspects such as the role of coherence in thermodynamics, the use of clock degrees of freedom and the simulation of local time-dependent Hamiltonians in a particular quantum subsystem. For small-scale systems additional issues arise. Firstly, it is not clear to what...
Fluctuations strongly affect the dynamics and functionality of nanoscale thermal machines. Recent de...
This is the final version. Available from American Physical Society via the DOI in this recordThe pe...
We consider an isolated autonomous quantum machine, where an explicit quantum clock is responsible f...
The interplay between quantum-mechanical properties, such as coherence, and classical notions, such ...
The interplay between quantum-mechanical properties, such as coherence, and classical notions, such ...
Thermodynamics is a highly successful macroscopic theory widely used across the natural sciences and...
Thermodynamics is one of the core disciplines of physics, and despite its long history it is still a...
We present a model for an autonomous quantum thermal machine composed of two qubits capable of manip...
In recent years we have witnessed a concentrated effort to make sense of thermodynamics for small-sc...
How much work can be extracted from a heat bath using a thermal machine? The study of this question ...
The minimal set of thermodynamic control parameters consists of a statistical (thermal) and a mechan...
The relationship between thermodynamics and statistical physics is valid in the thermodynamic limit—...
Planck found, when attempting to describe the way in which hot bodies glow, that energy at microscop...
Thermodynamics is a highly successful macroscopic theory widely used across the natural sciences and...
In this quantum thermodynamics [1] talk, I will discuss work extraction in the quantum regime. We se...
Fluctuations strongly affect the dynamics and functionality of nanoscale thermal machines. Recent de...
This is the final version. Available from American Physical Society via the DOI in this recordThe pe...
We consider an isolated autonomous quantum machine, where an explicit quantum clock is responsible f...
The interplay between quantum-mechanical properties, such as coherence, and classical notions, such ...
The interplay between quantum-mechanical properties, such as coherence, and classical notions, such ...
Thermodynamics is a highly successful macroscopic theory widely used across the natural sciences and...
Thermodynamics is one of the core disciplines of physics, and despite its long history it is still a...
We present a model for an autonomous quantum thermal machine composed of two qubits capable of manip...
In recent years we have witnessed a concentrated effort to make sense of thermodynamics for small-sc...
How much work can be extracted from a heat bath using a thermal machine? The study of this question ...
The minimal set of thermodynamic control parameters consists of a statistical (thermal) and a mechan...
The relationship between thermodynamics and statistical physics is valid in the thermodynamic limit—...
Planck found, when attempting to describe the way in which hot bodies glow, that energy at microscop...
Thermodynamics is a highly successful macroscopic theory widely used across the natural sciences and...
In this quantum thermodynamics [1] talk, I will discuss work extraction in the quantum regime. We se...
Fluctuations strongly affect the dynamics and functionality of nanoscale thermal machines. Recent de...
This is the final version. Available from American Physical Society via the DOI in this recordThe pe...
We consider an isolated autonomous quantum machine, where an explicit quantum clock is responsible f...