A Nernst heat theorem for nonequilibrium jump processes F Khodabandehlou, C Maes, K Netočný The Journal of Chemical Physics 158 (20), 2023 | 15 | 2023 |
Exact computation of heat capacities for active particles on a graph F Khodabandehlou, S Krekels, I Maes Journal of Statistical Mechanics: Theory and Experiment 2022 (12), 123208, 2022 | 13 | 2022 |
Trees and forests for nonequilibrium purposes: an introduction to graphical representations F Khodabandehlou, C Maes, K Netočný Journal of Statistical Physics 189 (3), 41, 2022 | 12 | 2022 |
The vanishing of excess heat for nonequilibrium processes reaching zero ambient temperature F Khodabandehlou, C Maes, I Maes, K Netočný Annales Henri Poincaré 25 (7), 3371-3403, 2024 | 8 | 2024 |
Drazin-inverse and heat capacity for driven random walkers on the ring F Khodabandehlou, I Maes Stochastic Processes and their Applications 164, 337-356, 2023 | 8 | 2023 |
On the Poisson equation for nonreversible Markov jump processes F Khodabandehlou, C Maes, K Netočný Journal of Mathematical Physics 65 (4), 2024 | 2 | 2024 |
Close-to-equilibrium heat capacity F Khodabandehlou, C Maes Journal of Physics A: Mathematical and Theoretical 57 (20), 205001, 2024 | 1 | 2024 |
Local detailed balance for active particle models F Khodabandehlou, C Maes arXiv preprint arXiv:2401.11850, 2024 | 1 | 2024 |
Nonequilibrium graph theory F Khodabandehlou, C Maes | | 2024 |
Nonequlibrium Third Law of Thermodynamics F Khodabandehlou arXiv preprint arXiv:2401.11995, 2024 | | 2024 |
The Sun within: active processes from two-temperature models F Khodabandehlou, C Maes bioRxiv, 2023.10. 21.563425, 2023 | | 2023 |