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 paper, 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
There are only a very few known relations in statistical dynamics that are valid for systems driven ...
Fluctuation theorems make use of time reversal to make predictions about entropy production in many-...
Fluctuation theorems specify the non-zero probability to observe negative entropy production, contra...
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 ...
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 s...
The total entropy production generated by the dynamics of an externally driven systems exchanging en...
Entropy production (EP) is a fundamental quantity useful for understanding irreversible process. In ...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
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...
We derive a simple closed analytical expression for the total entropy production along a single stoc...
There are only a very few known relations in statistical dynamics that are valid for systems driven ...
Fluctuation theorems make use of time reversal to make predictions about entropy production in many-...
Fluctuation theorems specify the non-zero probability to observe negative entropy production, contra...
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 ...
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 s...
The total entropy production generated by the dynamics of an externally driven systems exchanging en...
Entropy production (EP) is a fundamental quantity useful for understanding irreversible process. In ...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
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...
We derive a simple closed analytical expression for the total entropy production along a single stoc...
There are only a very few known relations in statistical dynamics that are valid for systems driven ...
Fluctuation theorems make use of time reversal to make predictions about entropy production in many-...
Fluctuation theorems specify the non-zero probability to observe negative entropy production, contra...