[[abstract]]We present a critical examination of the difficulties with the quantum versions of a lifted weight that are widely used as work storage systems in quantum thermodynamics. To overcome those difficulties, we turn to the strong connections between information and thermodynamics illuminated by Szilard's engine and Landauer's principle, and consider the concept of informational work storage. This concept is in sharp contrast with the usual one of mechanical work storage underlying the idealization of a quantum weight. An informational work storage system based on maximally mixed qubits that does not act as an entropy sink and is capable of truly distinguishing work from heat is studied. Applying it to the problem of single-shot work ...
Protocols can be used to evolve a quantum system from one state to another by dictating the Hamilton...
Information-theoretic approaches provide a promising avenue for extending the laws of thermodynamics...
In recent years we have witnessed a concentrated effort to make sense of thermodynamics for small-sc...
The central purpose of this thesis is to study the familiar processes of quantum information theory...
[[abstract]]We revisit the problem of work extraction from a system in contact with a heat bath to a...
Description: In the context of quantum thermodynamics the Landauer's principle and the Szilard engin...
We consider the task of extracting work from quantum systems in the resource theory perspective of t...
It is often claimed, that from a quantum system of d levels, and entropy S and heat bath of temperat...
The information-carrying capacity of a memory is known to be a thermodynamic resource facilitating t...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
Quantum work is usually determined from two projective measurements of the energy at the beginning a...
peer reviewedWe expand the standard thermodynamic framework of a system coupled to a thermal reservo...
Open access journalThis paper considers work extraction from a quantum system to a work storage syst...
Work and quantum correlations are two fundamental resources in thermodynamics and quantum informatio...
We analyze the entropy production and the maximal extractable work from a squeezed thermal reservoir...
Protocols can be used to evolve a quantum system from one state to another by dictating the Hamilton...
Information-theoretic approaches provide a promising avenue for extending the laws of thermodynamics...
In recent years we have witnessed a concentrated effort to make sense of thermodynamics for small-sc...
The central purpose of this thesis is to study the familiar processes of quantum information theory...
[[abstract]]We revisit the problem of work extraction from a system in contact with a heat bath to a...
Description: In the context of quantum thermodynamics the Landauer's principle and the Szilard engin...
We consider the task of extracting work from quantum systems in the resource theory perspective of t...
It is often claimed, that from a quantum system of d levels, and entropy S and heat bath of temperat...
The information-carrying capacity of a memory is known to be a thermodynamic resource facilitating t...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
Quantum work is usually determined from two projective measurements of the energy at the beginning a...
peer reviewedWe expand the standard thermodynamic framework of a system coupled to a thermal reservo...
Open access journalThis paper considers work extraction from a quantum system to a work storage syst...
Work and quantum correlations are two fundamental resources in thermodynamics and quantum informatio...
We analyze the entropy production and the maximal extractable work from a squeezed thermal reservoir...
Protocols can be used to evolve a quantum system from one state to another by dictating the Hamilton...
Information-theoretic approaches provide a promising avenue for extending the laws of thermodynamics...
In recent years we have witnessed a concentrated effort to make sense of thermodynamics for small-sc...