Dissertation
Ab initio Molecular Dynamics Simulations of the Structural Response of Solids to Ultrashort Laser and XUV Pulses
Abstract
The theoretical model and underlying physics described in this thesis are about the interaction of femtosecond-laser and XUV pulses with solids. The key to understand the basics of such interaction is to study the structural response of the materials after laser interaction. Depending on the laser characteristics, laser-solid interaction can result in a wide range of structural responses such as solid-solid phase transitions, vacuum phonon squeezing, ultrafast melting, generation of coherent phonons, etc. During my research work, I have modeled the systems irradiated by low-, medium- and high-laser intensities, and studied different types of structural dynamics of solids at various laser fluences.
Sponsorship
Promotionsstipendium der Universität Kassel, Germany.Collections
Dissertationen (Theoretische Physik II - Theoretische Festkörper- und Ultrakurzzeitphysik)Citation
@phdthesis{urn:nbn:de:hebis:34-2015041048089,
author={Cheenicode Kabeer, Fairoja},
title={Ab initio Molecular Dynamics Simulations of the Structural Response of Solids to Ultrashort Laser and XUV Pulses},
school={Universität Kassel, Fachbereich Mathematik und Naturwissenschaften},
month={04},
year={2015}
}
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2015-04-10T09:06:21Z 2015-04-10T09:06:21Z 2015-04-10 urn:nbn:de:hebis:34-2015041048089 http://hdl.handle.net/123456789/2015041048089 Promotionsstipendium der Universität Kassel, Germany. eng Urheberrechtlich geschützt https://rightsstatements.org/page/InC/1.0/ 530 Ab initio Molecular Dynamics Simulations of the Structural Response of Solids to Ultrashort Laser and XUV Pulses Dissertation The theoretical model and underlying physics described in this thesis are about the interaction of femtosecond-laser and XUV pulses with solids. The key to understand the basics of such interaction is to study the structural response of the materials after laser interaction. Depending on the laser characteristics, laser-solid interaction can result in a wide range of structural responses such as solid-solid phase transitions, vacuum phonon squeezing, ultrafast melting, generation of coherent phonons, etc. During my research work, I have modeled the systems irradiated by low-, medium- and high-laser intensities, and studied different types of structural dynamics of solids at various laser fluences. open access Cheenicode Kabeer, Fairoja Universität Kassel, Fachbereich Mathematik und Naturwissenschaften E. Garcia, Martin O. Jeschke, Harald Femtosekundenlaser Extremes Ultraviolett 2014-10-28
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Urheberrechtlich geschützt