We study the thermodynamic properties induced by non-reciprocal interactions between stochastic degrees of freedom in time- and space-continuous systems. We show that, under fairly general conditions, non-reciprocal coupling alone implies a steady energy flow through the system, i.e., non-equilibrium. Projecting out the non-reciprocally coupled degrees of freedom renders non-Markovian, one-variable Langevin descriptions with complex types of memory, for which we find a generalized second law involving information flow.We demonstrate that non-reciprocal linear interactions can be used to engineer non-monotonic memory, which is typical for, e.g., time-delayed feedback control, and is automatically accompanied with a nonzero information flow t...
Non-reciprocal interactions are present in many systems out of equilibrium. The rate of entropy prod...
By use of the recently presented two measures, the indivisibility and the backflow of info...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...
We provide a unified thermodynamic formalism describing information transfers in autonomous as well ...
We explored the dynamics of two interacting information systems. We show that for the Markovian marg...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
Abstract: The entropy production in stochastic dynamical systems is linked to the structure of their...
Information plays a pivotal role in the thermodynamics of nonequilibrium processes with feedback. Ho...
Let us summarize, in a schematic fashion, the results achieved in this work: • Projection operation...
We discuss the relevance of information contained in cross correlations among different degrees of f...
Transfer entropy is a recently introduced information-theoretic measure quantifying directed statist...
We investigate the adiabatic evolution of thermal state in non-reciprocal many-body systems coupled ...
We expand the standard thermodynamic framework of a system coupled to a thermal reservoir by conside...
The steady state of a Langevin equation with short-ranged memory and coloured noise is analyzed. Whe...
The dynamics of many-body complex processes is a challenge that many scientists from various fields...
Non-reciprocal interactions are present in many systems out of equilibrium. The rate of entropy prod...
By use of the recently presented two measures, the indivisibility and the backflow of info...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...
We provide a unified thermodynamic formalism describing information transfers in autonomous as well ...
We explored the dynamics of two interacting information systems. We show that for the Markovian marg...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
Abstract: The entropy production in stochastic dynamical systems is linked to the structure of their...
Information plays a pivotal role in the thermodynamics of nonequilibrium processes with feedback. Ho...
Let us summarize, in a schematic fashion, the results achieved in this work: • Projection operation...
We discuss the relevance of information contained in cross correlations among different degrees of f...
Transfer entropy is a recently introduced information-theoretic measure quantifying directed statist...
We investigate the adiabatic evolution of thermal state in non-reciprocal many-body systems coupled ...
We expand the standard thermodynamic framework of a system coupled to a thermal reservoir by conside...
The steady state of a Langevin equation with short-ranged memory and coloured noise is analyzed. Whe...
The dynamics of many-body complex processes is a challenge that many scientists from various fields...
Non-reciprocal interactions are present in many systems out of equilibrium. The rate of entropy prod...
By use of the recently presented two measures, the indivisibility and the backflow of info...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...