Evaluating the entropy production (EP) along a stochastic trajectory requires the knowledge of the system probability distribution, an ensemble quantity notoriously difficult to measure. In this letter, we show that the EP of nonautonomous systems in contact with multiple reservoirs can be expressed solely in terms of physical quantities measurable at the single trajectory level with a suitable preparation of the initial condition. As a result, we identify universal energy and particle fluctuation relations valid for any measurement time. We apply our findings to an electronic junction model which may be used to verify our prediction experimentally
peer reviewedWe present a general method to identify an arbitrary number of fluctuating quantities w...
The total entropy production fluctuations are studied in some exactly solvable models. For these sys...
One of the major goals of quantum thermodynamics is the characterization of irreversibility and its ...
peer reviewedEvaluating the entropy production (EP) along a stochastic trajectory requires the knowl...
Evaluating the entropy production (EP) along a stochastic trajectory requires the knowledge of the ...
Evaluating the entropy production (EP) along a stochastic trajectory requires the knowledge of the ...
Evaluating the entropy production (EP) along a stochastic trajectory requires the knowledge of the ...
The total entropy production generated by the dynamics of an externally driven systems exchanging en...
Entropy production and the detailed fluctuation theorem are of fundamental importance for thermodyna...
Fluctuation theorems impose constraints on the probability of observing negative entropy production ...
The rate of entropy production by a stochastic process quantifies how far it is from thermodynamic e...
Exploiting previous results on Markovian dynamics and fluctuation theorems, we study the consequence...
Exploiting previous results on Markovian dynamics and fluctuation theorems, we study the consequence...
In this paper, we extend the fluctuation theorems used for quantum channels to multitime processes. ...
5One of the major goals of quantum thermodynamics is the characterization of irreversibility and its...
peer reviewedWe present a general method to identify an arbitrary number of fluctuating quantities w...
The total entropy production fluctuations are studied in some exactly solvable models. For these sys...
One of the major goals of quantum thermodynamics is the characterization of irreversibility and its ...
peer reviewedEvaluating the entropy production (EP) along a stochastic trajectory requires the knowl...
Evaluating the entropy production (EP) along a stochastic trajectory requires the knowledge of the ...
Evaluating the entropy production (EP) along a stochastic trajectory requires the knowledge of the ...
Evaluating the entropy production (EP) along a stochastic trajectory requires the knowledge of the ...
The total entropy production generated by the dynamics of an externally driven systems exchanging en...
Entropy production and the detailed fluctuation theorem are of fundamental importance for thermodyna...
Fluctuation theorems impose constraints on the probability of observing negative entropy production ...
The rate of entropy production by a stochastic process quantifies how far it is from thermodynamic e...
Exploiting previous results on Markovian dynamics and fluctuation theorems, we study the consequence...
Exploiting previous results on Markovian dynamics and fluctuation theorems, we study the consequence...
In this paper, we extend the fluctuation theorems used for quantum channels to multitime processes. ...
5One of the major goals of quantum thermodynamics is the characterization of irreversibility and its...
peer reviewedWe present a general method to identify an arbitrary number of fluctuating quantities w...
The total entropy production fluctuations are studied in some exactly solvable models. For these sys...
One of the major goals of quantum thermodynamics is the characterization of irreversibility and its ...