Since the first suggestion of the Jarzynski equality many derivations of this equality have been presented in both the classical and the quantum context. While the approaches and settings differ greatly from one another, they all appear to rely on the condition that the initial state is a thermal Gibbs state. Here, we present an investigation of work distributions in driven isolated quantum systems, starting from pure states that are close to energy eigenstates of the initial Hamiltonian. We find that, for the nonintegrable quantum ladder studied, the Jarzynski equality is fulfilled to a good accuracy.</p
Thermodynamics is the phenomenological theory of heat and work. Here we analyze to what extent quant...
The project concerns the study of the interplay among quantum mechanics, statistical mechanics and t...
The Jarzynski equality relates the free-energy difference between two equilibrium states to the work...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Quantum spin systems provide rich opportunities to study properties of collective quantum behavior. ...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
Understanding the evolution towards thermal equilibrium of an iso-lated quantum system is at the fou...
In this note, we will discuss how to compactly express the Jarzynski identity for an open quantum sy...
A system–bath (SB) model is considered to examine the Jarzynski equality in the fully quantum regime...
Thermodynamics is the phenomenological theory of heat and work. Here we analyze to what extent quant...
The project concerns the study of the interplay among quantum mechanics, statistical mechanics and t...
The Jarzynski equality relates the free-energy difference between two equilibrium states to the work...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
Quantum spin systems provide rich opportunities to study properties of collective quantum behavior. ...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
Understanding the evolution towards thermal equilibrium of an iso-lated quantum system is at the fou...
In this note, we will discuss how to compactly express the Jarzynski identity for an open quantum sy...
A system–bath (SB) model is considered to examine the Jarzynski equality in the fully quantum regime...
Thermodynamics is the phenomenological theory of heat and work. Here we analyze to what extent quant...
The project concerns the study of the interplay among quantum mechanics, statistical mechanics and t...
The Jarzynski equality relates the free-energy difference between two equilibrium states to the work...