This effect, which significantly reduces the friction experienced by the particle, arises from the time-delayed response of the bath to external forces, preventing immediate relaxation to equilibrium.
First-pass extracted concept
non-Markovian bath
Candidate: concept label1 source documents3 linked claims
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Evidence Snippets
Supporting Sources
Linked Claims
Similar energy recovery mechanisms could apply to other non-Markovian environments including critical fluids and active baths.
Quoted textsource-backed
suggesting that similar energy recovery mechanisms could be applicable to a broad range of non-Markovian environments, including critical fluids and active baths
The delayed bath response temporarily stores energy and enables bidirectional energy exchange between the non-equilibrium bath and the particle.
Quoted textsource-backed
As a result, energy is temporarily stored, enabling bidirectional energy exchange between the non-equilibrium bath and the particle.
The reported energy recuperation arises from the time-delayed response of the bath to external forces, which prevents immediate relaxation to equilibrium.
Quoted textsource-backed
This effect, which significantly reduces the friction experienced by the particle, arises from the time-delayed response of the bath to external forces, preventing immediate relaxation to equilibrium.