Attosecond and strong-field physics: principles and applications
Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible with the generation of attosecond pulses by few-cycle intense lasers, and has revolutionized our understanding of atomic structure and molecular processes. This book provides an intuitive approach to t...
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Format: | E-Book |
Sprache: | Englisch |
Veröffentlicht: |
Cambridge
Cambridge University Press
2018
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Links: | https://doi.org/10.1017/9781108181839 |
Zusammenfassung: | Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible with the generation of attosecond pulses by few-cycle intense lasers, and has revolutionized our understanding of atomic structure and molecular processes. This book provides an intuitive approach to this emerging field, utilizing simplified models to develop a clear understanding of how matter interacts with attosecond pulses of light. An introductory chapter outlines the structure of atoms and molecules and the properties of a focused laser beam. Detailed discussion of the fundamental theory of attosecond and strong-field physics follows, including the molecular tunnelling ionization model (MO-ADK theory), the quantitative rescattering (QRS) model, and the laser induced electronic diffraction (LIED) theory for probing the change of atomic configurations in a molecule. Highlighting the cutting-edge developments in attosecond and strong field physics, and identifying future opportunities and challenges, this self-contained text is invaluable for students and researchers in the field. |
Umfang: | 1 Online-Ressource (xi, 405 Seiten) |
ISBN: | 9781108181839 |
Internformat
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100 | 1 | |a Lin, C. D. |d 1946- | |
245 | 1 | 0 | |a Attosecond and strong-field physics |b principles and applications |c C.D. Lin, Anh Thu Le, Cheng Jin, Hui Wei |
264 | 1 | |a Cambridge |b Cambridge University Press |c 2018 | |
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520 | |a Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible with the generation of attosecond pulses by few-cycle intense lasers, and has revolutionized our understanding of atomic structure and molecular processes. This book provides an intuitive approach to this emerging field, utilizing simplified models to develop a clear understanding of how matter interacts with attosecond pulses of light. An introductory chapter outlines the structure of atoms and molecules and the properties of a focused laser beam. Detailed discussion of the fundamental theory of attosecond and strong-field physics follows, including the molecular tunnelling ionization model (MO-ADK theory), the quantitative rescattering (QRS) model, and the laser induced electronic diffraction (LIED) theory for probing the change of atomic configurations in a molecule. Highlighting the cutting-edge developments in attosecond and strong field physics, and identifying future opportunities and challenges, this self-contained text is invaluable for students and researchers in the field. | ||
700 | 1 | |a Jin, Cheng |d 1980- | |
700 | 1 | |a Le, Anh Thu |d 1967- | |
700 | 1 | |a Wei, Hui | |
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Datensatz im Suchindex
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spelling | Lin, C. D. 1946- Attosecond and strong-field physics principles and applications C.D. Lin, Anh Thu Le, Cheng Jin, Hui Wei Cambridge Cambridge University Press 2018 1 Online-Ressource (xi, 405 Seiten) txt c cr Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible with the generation of attosecond pulses by few-cycle intense lasers, and has revolutionized our understanding of atomic structure and molecular processes. This book provides an intuitive approach to this emerging field, utilizing simplified models to develop a clear understanding of how matter interacts with attosecond pulses of light. An introductory chapter outlines the structure of atoms and molecules and the properties of a focused laser beam. Detailed discussion of the fundamental theory of attosecond and strong-field physics follows, including the molecular tunnelling ionization model (MO-ADK theory), the quantitative rescattering (QRS) model, and the laser induced electronic diffraction (LIED) theory for probing the change of atomic configurations in a molecule. Highlighting the cutting-edge developments in attosecond and strong field physics, and identifying future opportunities and challenges, this self-contained text is invaluable for students and researchers in the field. Jin, Cheng 1980- Le, Anh Thu 1967- Wei, Hui Erscheint auch als Druck-Ausgabe 9781107197763 |
spellingShingle | Lin, C. D. 1946- Attosecond and strong-field physics principles and applications |
title | Attosecond and strong-field physics principles and applications |
title_auth | Attosecond and strong-field physics principles and applications |
title_exact_search | Attosecond and strong-field physics principles and applications |
title_full | Attosecond and strong-field physics principles and applications C.D. Lin, Anh Thu Le, Cheng Jin, Hui Wei |
title_fullStr | Attosecond and strong-field physics principles and applications C.D. Lin, Anh Thu Le, Cheng Jin, Hui Wei |
title_full_unstemmed | Attosecond and strong-field physics principles and applications C.D. Lin, Anh Thu Le, Cheng Jin, Hui Wei |
title_short | Attosecond and strong-field physics |
title_sort | attosecond and strong field physics principles and applications |
title_sub | principles and applications |
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