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Thermodynamic uncertainty relations under arbitrary control protocols

delete2020-01-17
delete39
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OA
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T
Tan Van Vu *
Y
Yoshihiko Hasegawa
DOI:10.1103/PhysRevResearch.2.013060delete
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Abstract

Abstract

En 中文
Thermodynamic uncertainty relations quantifying a trade-off between current fluctuation and entropy production have been found in various stochastic systems. Herein, we study the thermodynamic uncertainty relations for Langevin systems driven by an external control protocol. Using information-theoretic techniques, we derive the uncertainty relations for arbitrary observables satisfying a scaling condition in both overdamped and underdamped regimes. We prove that the observable fluctuation is constrained by both entropy production and a kinetic term. The derived bounds are applicable to both current and noncurrent observables, and hold for arbitrary time-dependent protocols, thus providing a wide range of applicability. We illustrate our universal bounds with the help of three systems: a dragged Brownian particle, a Brownian gyrator, and a stochastic underdamped heat engine.
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Journal

Physical Review Research cover
Physical Review Research
IF:
4.2
Papers:
7.6K
Citations:
2.7W

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U
University of Tokyo
Scholars:
7.1W
Papers: 6.5W
Citations: 2.2K