Thomas D Swinburne Swinburne Stochastic Dynamics of Crystal Defects

Stochastic Dynamics of Crystal Defects

von Thomas D Swinburne

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Beschreibung

This thesis is concerned with establishing a rigorous, modern theory of the stochastic and dissipative forces on crystal defects, which remain poorly understood despite their importance in any temperature dependent micro-structural process such as the ductile to brittle transition or irradiation damage.
The author first uses novel molecular dynamics simulations to parameterise an efficient, stochastic and discrete dislocation model that allows access to experimental time and length scales. Simulated trajectories are in excellent agreement with experiment. The author also applies modern methods of multiscale analysis to extract novel bounds on the transport properties of these many body systems.
Despite their successes in coarse graining, existing theories are found unable to explain stochastic defect dynamics. To resolve this, the author defines crystal defects through projection operators, without any recourse to elasticity. By rigorous dimensional reduction, explicit analytical forms are derived for the stochastic forces acting on crystal defects, allowing new quantitative insight into the role of thermal fluctuations in crystal plasticity.

This thesis is concerned with establishing a rigorous, modern theory of the stochastic and dissipative forces on crystal defects, which remain poorly understood despite their importance in any temperature dependent micro-structural process such as the ductile to brittle transition or irradiation damage.

The author first uses novel molecular dynamics simulations to parameterise an efficient, stochastic and discrete dislocation model that allows access to experimental time and length scales. Simulated trajectories are in excellent agreement with experiment. The author also applies modern methods of multiscale analysis to extract novel bounds on the transport properties of these many body systems.

Despite their successes in coarse graining, existing theories are found unable to explain stochastic defect dynamics. To resolve this, the author defines crystal defects through projection operators, without any recourse to elasticity. By rigorous dimensional reduction, explicit analytical forms are derived for the stochastic forces acting on crystal defects, allowing new quantitative insight into the role of thermal fluctuations in crystal plasticity.


Nominated as an outstanding Ph.D. thesis by the Imperial College London, UK Provides detailed derivation of an exact equation of motion for defects and dislocations, with no recourse to elasticity theory Presents the introduction and application of new techniques in multiscale analysis applied to many-body stochastic dynamics in periodic systems Outlines novel methods for extracting the interaction of dislocations and defects with thermal vibrations in molecular dynamics simulation Includes supplementary material: sn.pub/extras

Autor*in

Thomas D Swinburne

Themen in »Stochastic Dynamics of Crystal Defects«

Dimensional reduction Dislocation mobility Ductile to brittle transition Irradiation damage Projection operators in molecular dynamics Rigorous theory of dislocation dynamics Stochastic dislocation dynamics Transport properties of many-body system

Stimmen zu »Stochastic Dynamics of Crystal Defects«

Details

ISBN: 9783319200187
Verlag: Springer International Publishing
Erscheinung: 22.07.2015

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