The fluctuation theorem (FT) and the work relation (WR) are two relations that extend our understanding of thermodynamics to non-equilibrium systems. While often treated as distinct relations, they are in fact closely related. In this letter we generalise these relations, showing that they are fundamental relations of statistical systems, and use these generalised forms to connect the FT and WR through a new set of relations, the conjugate work relations. We then take these general forms of the FT and WR, and show that they reduce to original forms under deterministic dynamics, before finally exploring their application to an experimental system
In this work, we have studied simple models that can be solved analytically to illustrate various fl...
Fluctuation theorems, developed over the past 15 years, have resulted in fundamental breakthroughs i...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
The fluctuation theorem (FT) and the work relation (WR) are two relations that extend our understand...
The fluctuation theorem and the work relation are exact nonequilibrium thermodynamic relations devel...
When a macroscopic system in contact with a heat reservoir is driven away from equilibrium, the seco...
The characteristic function of the work performed by an external time-dependent force on a Hamiltoni...
Thefluctuation dissipation theorem is at the heart of equilibrium statisticalmechanics. For a system...
A unified viewpoint is presented in margin to the ``Work, dissipation and fluctuations in nonequili...
The fluctuation theorem quantifies the distribution of reversible and irreversible system traje...
Fluctuation relations have been developed over the past decade, which describe the statistical fluct...
There are only a very few known relations in statistical dynamics that are valid for systems driven ...
We review the transient version of the work and fluctuation theorem. We verify the theorem explicitl...
Fluctuation-dissipation relations, such as Crooks ’ Theorem and Jarzynski’s Equality, are power-ful ...
Fluctuation theorems make use of time reversal to make predictions about entropy production in many-...
In this work, we have studied simple models that can be solved analytically to illustrate various fl...
Fluctuation theorems, developed over the past 15 years, have resulted in fundamental breakthroughs i...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
The fluctuation theorem (FT) and the work relation (WR) are two relations that extend our understand...
The fluctuation theorem and the work relation are exact nonequilibrium thermodynamic relations devel...
When a macroscopic system in contact with a heat reservoir is driven away from equilibrium, the seco...
The characteristic function of the work performed by an external time-dependent force on a Hamiltoni...
Thefluctuation dissipation theorem is at the heart of equilibrium statisticalmechanics. For a system...
A unified viewpoint is presented in margin to the ``Work, dissipation and fluctuations in nonequili...
The fluctuation theorem quantifies the distribution of reversible and irreversible system traje...
Fluctuation relations have been developed over the past decade, which describe the statistical fluct...
There are only a very few known relations in statistical dynamics that are valid for systems driven ...
We review the transient version of the work and fluctuation theorem. We verify the theorem explicitl...
Fluctuation-dissipation relations, such as Crooks ’ Theorem and Jarzynski’s Equality, are power-ful ...
Fluctuation theorems make use of time reversal to make predictions about entropy production in many-...
In this work, we have studied simple models that can be solved analytically to illustrate various fl...
Fluctuation theorems, developed over the past 15 years, have resulted in fundamental breakthroughs i...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...