Minimal dissipation with viscoelastic baths in weakly driven processes
arXiv:2503.10920 · doi:10.1103/qtj2-fx2q
Abstract
We investigate the thermodynamics of overdamped systems weakly driven by time-dependent protocols while interacting with viscoelastic heat baths. Using a generalized Langevin equation with memory, we derive the conditions under which the friction kernel ensures thermodynamic consistency, notably requiring the addition of a Dirac delta. Within linear response theory, we compute the relaxation function and relaxation time for two classes of protocols: moving and stiffening harmonic traps. Surprisingly, we find that viscoelastic memory does not always hinder relaxation; in certain cases, it accelerates it by reducing the effective relaxation time, leading to lower dissipation. We also derive optimal protocols that minimize the irreversible work and show how they are modified by the presence of the persistence time of the viscoelastic heat bath. Our results reveal that memory effects in the overdamped regime leave measurable thermodynamic signatures, depending on the protocol, with direct implications for controlling complex systems.
8 pages, 8 figures
References in corpus (15)
- Optimal finite-time processes in stochastic thermodynamics
- Optimal protocols for minimal work processes in underdamped stochastic thermodynamics
- Transient dynamics of a colloidal particle driven through a viscoelastic fluid
- Thermodynamic control -- an old paradigm with new applications
- Optimal Control in Stochastic Thermodynamics
- Probing linear and nonlinear microrheology of viscoelastic fluids
- Interacting Brownian dynamics in a nonequilibrium particle bath
- Active matter under control: Insights from response theory
- Quantum non-Markovianity: Overview and recent developments
- Compatibility of linear-response theory with the Second Law of Thermodynamics and the emergence of negative entropy production rates
- Passive particle in an active bath: How can we tell it is out of equilibrium?
- Performance of optimal linear-response processes in driven Brownian motion far from equilibrium
- Scaling limits for the generalized Langevin equation
- Analytical solution for optimal protocols of weak drivings
- Optimal work fluctuations for finite-time and weak processes