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Materials interaction with femtoseco...
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Bauerhenne, Bernd.
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Materials interaction with femtosecond lasers = theory and ultra-large-scale simulations of thermal and nonthermal pheomena /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Materials interaction with femtosecond lasers/ by Bernd Bauerhenne.
Reminder of title:
theory and ultra-large-scale simulations of thermal and nonthermal pheomena /
Author:
Bauerhenne, Bernd.
Published:
Cham :Springer International Publishing : : 2021.,
Description:
xxxii, 536 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- Ab-initio Description of Solids -- Ab-initio Description of a Fs-laser Excitation -- Ab-initio MD Simulations of the Excited Potential Energy Surface -- Empirical MD Simulations of Laser-excited Matter.
Contained By:
Springer Nature eBook
Subject:
Femtosecond lasers. -
Online resource:
https://doi.org/10.1007/978-3-030-85135-4
ISBN:
9783030851354
Materials interaction with femtosecond lasers = theory and ultra-large-scale simulations of thermal and nonthermal pheomena /
Bauerhenne, Bernd.
Materials interaction with femtosecond lasers
theory and ultra-large-scale simulations of thermal and nonthermal pheomena /[electronic resource] :by Bernd Bauerhenne. - Cham :Springer International Publishing :2021. - xxxii, 536 p. :ill. (some col.), digital ;24 cm.
Introduction -- Ab-initio Description of Solids -- Ab-initio Description of a Fs-laser Excitation -- Ab-initio MD Simulations of the Excited Potential Energy Surface -- Empirical MD Simulations of Laser-excited Matter.
This book presents a unified view of the response of materials as a result of femtosecond laser excitation, introducing a general theory that captures both ultrashort-time non-thermal and long-time thermal phenomena. It includes a novel method for performing ultra-large-scale molecular dynamics simulations extending into experimental and technological spatial dimensions with ab-initio precision. For this, it introduces a new class of interatomic potentials, constructed from ab-initio data with the help of a self-learning algorithm, and verified by direct comparison with experiments in two different materials -- the semiconductor silicon and the semimetal antimony. In addition to a detailed description of the new concepts introduced, as well as giving a timely review of ultrafast phenomena, the book provides a rigorous introduction to the field of laser-matter interaction and ab-initio description of solids, delivering a complete and self-contained examination of the topic from the very first principles. It explains, step by step from the basic physical principles, the underlying concepts in quantum mechanics, solid-state physics, thermodynamics, statistical mechanics, and electrodynamics, introducing all necessary mathematical theorems as well as their proofs. A collection of appendices provide the reader with an appropriate review of many fundamental mathematical concepts, as well as important analytical and numerical parameters used in the simulations.
ISBN: 9783030851354
Standard No.: 10.1007/978-3-030-85135-4doiSubjects--Topical Terms:
934949
Femtosecond lasers.
LC Class. No.: QC689.55.F46 / B38 2021
Dewey Class. No.: 621.366
Materials interaction with femtosecond lasers = theory and ultra-large-scale simulations of thermal and nonthermal pheomena /
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theory and ultra-large-scale simulations of thermal and nonthermal pheomena /
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Introduction -- Ab-initio Description of Solids -- Ab-initio Description of a Fs-laser Excitation -- Ab-initio MD Simulations of the Excited Potential Energy Surface -- Empirical MD Simulations of Laser-excited Matter.
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This book presents a unified view of the response of materials as a result of femtosecond laser excitation, introducing a general theory that captures both ultrashort-time non-thermal and long-time thermal phenomena. It includes a novel method for performing ultra-large-scale molecular dynamics simulations extending into experimental and technological spatial dimensions with ab-initio precision. For this, it introduces a new class of interatomic potentials, constructed from ab-initio data with the help of a self-learning algorithm, and verified by direct comparison with experiments in two different materials -- the semiconductor silicon and the semimetal antimony. In addition to a detailed description of the new concepts introduced, as well as giving a timely review of ultrafast phenomena, the book provides a rigorous introduction to the field of laser-matter interaction and ab-initio description of solids, delivering a complete and self-contained examination of the topic from the very first principles. It explains, step by step from the basic physical principles, the underlying concepts in quantum mechanics, solid-state physics, thermodynamics, statistical mechanics, and electrodynamics, introducing all necessary mathematical theorems as well as their proofs. A collection of appendices provide the reader with an appropriate review of many fundamental mathematical concepts, as well as important analytical and numerical parameters used in the simulations.
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EB QC689.55.F46 B38 2021
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