Steven J. Large Large Dissipation and Control in Microscopic Nonequilibrium Systems

Dissipation and Control in Microscopic Nonequilibrium Systems

von Steven J. Large

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Beschreibung

This thesis establishes a multifaceted extension of the deterministic control framework that has been a workhorse of nonequilibrium statistical mechanics, to stochastic, discrete, and autonomous control mechanisms. This facilitates the application of ideas from stochastic thermodynamics to the understanding of molecular machines in nanotechnology and in living things. It also gives a scale on which to evaluate the nonequilibrium energetic efficiency of molecular machines, guidelines for designing effective synthetic machines, and a perspective on the engineering principles that govern efficient microscopic energy transduction far from equilibrium. The thesis also documents the author’s design, analysis, and interpretation of the first experimental demonstration of the utility of this generally applicable method for designing energetically-efficient control in biomolecules. Protocols designed using this framework systematically reduced dissipation, when compared to naive protocols, in DNA hairpins across a wide range of experimental unfolding speeds and between sequences with wildly different physical characteristics.
This thesis establishes a multifaceted extension of the deterministic control framework that has been a workhorse of nonequilibrium statistical mechanics, to stochastic, discrete, and autonomous control mechanisms. This facilitates the application of ideas from stochastic thermodynamics to the understanding of molecular machines in nanotechnology and in living things. It also gives a scale on which to evaluate the nonequilibrium energetic efficiency of molecular machines, guidelines for designing effective synthetic machines, and a perspective on the engineering principles that govern efficient microscopic energy transduction far from equilibrium. The thesis also documents the author’s design, analysis, and interpretation of the first experimental demonstration of the utility of this generally applicable method for designing energetically-efficient control in biomolecules. Protocols designed using this framework systematically reduced dissipation, when compared to naive protocols, in DNA hairpins across a wide range of experimental unfolding speeds and between sequences with wildly different physical characteristics.
Nominated as an outstanding PhD thesis by Simon Fraser University Includes an accessible introduction to the mathematics that describes microscopic, fluctuating systems Advances theory and simulation of nonequilibrium systems, and experimental design and data analysis of DNA hairpins

Autor*in

Steven J. Large

Themen in »Dissipation and Control in Microscopic Nonequilibrium Systems«

Deterministic control system Stochastic thermodynamics Stochastic control mechanism Molecular machine Irreversible thermodynamics Maxwell’s Demon Biological systems in vivo DNA hairpin

Stimmen zu »Dissipation and Control in Microscopic Nonequilibrium Systems«

Details

ISBN: 9783030858247
Verlag: Springer International Publishing
Erscheinung: 24.10.2021

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