Evaluating non-equilibrium trajectories via mean back relaxation: Dependence on length and time scales

G Gabriel Knotz (Institute for Theoretical Physics, University of Göttingen 1 , 37077 Göttingen,) T Till M. Muenker (Third Institute of Physics, University of Göttingen 2 , 37077 Göttingen,) T Timo Betz (Third Institute of Physics, University of Göttingen 2 , 37077 Göttingen,) M Matthias Krüger (Institute for Theoretical Physics, University of Göttingen 1 , 37077 Göttingen,)

Abstract

The mean back relaxation (MBR) relates the value of a stochastic process at three different time points. It has been shown to detect broken detailed balance under certain conditions. For experiments of probe particles in living and passivated cells, MBR was found to be related to the so-called effective energy, which quantifies the violation of the fluctuation–dissipation theorem. In this paper, we discuss the dependence on the length and time parameters that enter MBR, both for cells as well as for a model system, finding qualitative agreement between the two. For the cell data, we extend the phenomenological relation between MBR and effective energy to a larger range of time parameters compared to previous work, allowing us to test it in systems with limited resolution. We analyze the variance of back relaxation (VBR) in dependence of the mentioned parameters, relevant for the statistical error in MBR evaluation. For Gaussian systems, the variance is found analytically in terms of the mean squared displacement, and we determine its absolute minimum as a function of the length and time parameters. Comparing VBR from cell data to a Gaussian prediction demonstrates a non-Gaussian process.

Article Details

Volume / Issue Vol. 163, Issue 12
Published September 28, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (4)

G

Gabriel Knotz

Institute for Theoretical Physics, University of Göttingen 1 , 37077 Göttingen,

T

Till M. Muenker

Third Institute of Physics, University of Göttingen 2 , 37077 Göttingen,

T

Timo Betz

Third Institute of Physics, University of Göttingen 2 , 37077 Göttingen,

M

Matthias Krüger

Institute for Theoretical Physics, University of Göttingen 1 , 37077 Göttingen,