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Universität Bielefeld

Escape processes far from thermal equilibrium : path integrals and force spectroscopy

Abstract

dc:description.abstract

Thermally activated escape over a potential barrier is ubiquitous in physical, biological, chemical, and technical processes and its understanding of paramount importance. For example, single-molecule force spectroscopy experiments, and a number of other physical systems are governed by thermally activated transitions out of a metastable state under the action of a steadily increasing external force. This allows to observe the chemical dissociation of two biomolecules at the single-molecule level. In the first part of this work, we address the problem of theoretically modeling and interpreting these experiments. In the second part of this thesis, the technique of path integration is employed to develop an approximation to the instantaneous escape rate that applies to arbitrarily modulated potentials and temperatures. As such systems are far from thermal equilibrium, the physics is not restricted by the second law of thermodynamics and interesting effects can occur. Using our new approximation, several of these effects are discussed and demonstrated.

Degree

thesis:*
Level thesis:degree_level
thesis.doctoral
Grantor dc:publisher
Universität Bielefeld
Year
2009

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Getfert, Sebastian

Identifiers

dc:identifier.*
Repository record source_url
https://pub.uni-bielefeld.de/record/2301687
OAI identifier oai:identifier
oai:pub.uni-bielefeld.de:2301687

Chain of custody

source
Harvested from
Universität Bielefeld
Base URL
pub.uni-bielefeld.de/oai
Last updated
2026-07-27
Source record
OAI-PMH GetRecord
citation

Getfert, Sebastian. Escape processes far from thermal equilibrium : path integrals and force spectroscopy. thesis.doctoral thesis, Universität Bielefeld, 2009. https://pub.uni-bielefeld.de/record/2301687