The interplay between quantum-mechanical properties, such as coherence, and classical notions, such as energy, is a subtle topic at the forefront of quantum thermodynamics. The traditional Carnot argument limits the conversion of heat to work; here we critically assess the problem of converting coherence to work. Through a careful account of all resources involved in the thermodynamic transformations within a fully quantum-mechanical treatment, we show that there exist thermal machines extracting work from coherence arbitrarily well. Such machines only need to act on individual copies of a state and can be reused. On the other hand, we show that for any thermal machine with finite resources not all the coherence of a state can be extracted ...
A key concept in quantum thermodynamics is extractable work, which specifies the maximum amount of w...
We present a model for an autonomous quantum thermal machine composed of two qubits capable of manip...
We consider the task of extracting work from quantum systems in the resource theory perspective of t...
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...
There are both practical and foundational motivations to consider the thermodynamics of quantum syst...
In this quantum thermodynamics [1] talk, I will discuss work extraction in the quantum regime. We se...
Planck found, when attempting to describe the way in which hot bodies glow, that energy at microscop...
The first law of thermodynamics imposes not just a constraint on the energy content of systems in ex...
The first law of thermodynamics imposes not just a constraint on the energy content of systems in ex...
In thermodynamics, quantum coherences—superpositions between energy eigenstates—behave in distinctly...
In recent years we have witnessed a concentrated effort to make sense of thermodynamics for small-sc...
In the framework of quantum thermodynamics preparing a quantum system in a general state requires th...
How much work can be extracted from a heat bath using a thermal machine? The study of this question ...
This is the final version. Available on open access from Nature Research via the DOI in this recordI...
A key concept in quantum thermodynamics is extractable work, which specifies the maximum amount of w...
We present a model for an autonomous quantum thermal machine composed of two qubits capable of manip...
We consider the task of extracting work from quantum systems in the resource theory perspective of t...
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...
There are both practical and foundational motivations to consider the thermodynamics of quantum syst...
In this quantum thermodynamics [1] talk, I will discuss work extraction in the quantum regime. We se...
Planck found, when attempting to describe the way in which hot bodies glow, that energy at microscop...
The first law of thermodynamics imposes not just a constraint on the energy content of systems in ex...
The first law of thermodynamics imposes not just a constraint on the energy content of systems in ex...
In thermodynamics, quantum coherences—superpositions between energy eigenstates—behave in distinctly...
In recent years we have witnessed a concentrated effort to make sense of thermodynamics for small-sc...
In the framework of quantum thermodynamics preparing a quantum system in a general state requires th...
How much work can be extracted from a heat bath using a thermal machine? The study of this question ...
This is the final version. Available on open access from Nature Research via the DOI in this recordI...
A key concept in quantum thermodynamics is extractable work, which specifies the maximum amount of w...
We present a model for an autonomous quantum thermal machine composed of two qubits capable of manip...
We consider the task of extracting work from quantum systems in the resource theory perspective of t...