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Resolving Strong Field Dynamics in Cation States of Co_2 Via Optimised Molecular Alignment (2014)

Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment

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"Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment" by Malte Oppermann is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.

This thesis presents an experimental study of the ultrafast molecular dynamics of CO_2^+ that are induced by a strong, near-infrared, femtosecond laser pulse. In particular, typical strong field phenomena such as tunneling ionisation, nonsequential double ionisation and photo-induced dissociation are investigated and controlled by employing an experimental technique called impulsive molecular alignment. Here, a first laser pulse fixes the molecule in space, such that the molecular dynamics can be studied as a function of the molecular geometry with a second laser pulse. The experiments are placed within the context of the study and control of ultrafast molecular dynamics, where sub-femtosecond (10^-15 seconds) resolution in ever larger molecular systems represents the current frontier of research. The thesis presents the required background in strong field and molecular physics, femtosecond laser architecture and experimental techniques in a clear and accessible language that does not require any previous knowledge in these fields.

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Best For: Researchers and students in advanced physics and physical chemistry focusing on molecular dynamics and laser interactions.
Focus: Experimental investigation of ultrafast molecular dynamics in ionized CO_2 using strong near-infrared femtosecond laser pulses and molecular alignment techniques.
Covers: Strong field phenomena including tunneling ionisation, nonsequential double ionisation, and photo-induced dissociation in CO_2^+ molecules.
Why It Matters: Provides insights into controlling molecular processes at ultrafast timescales, relevant for understanding and manipulating atomic and molecular behavior under intense laser fields.

"Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment" by Malte Oppermann is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.

Topic: Cosmology

Author: Malte Oppermann

Who this is for:

  • Astronomy students
  • Researchers and advanced hobbyists
  • Readers exploring space science topics

Why this book matters: It matters because it helps readers build a stronger understanding of astronomy concepts, observations, and scientific ideas related to space.

This thesis presents an experimental study of the ultrafast molecular dynamics of CO_2^+ that are induced by a strong, near-infrared, femtosecond laser pulse. In particular, typical strong field phenomena such as tunneling ionisation, nonsequential double ionisation and photo-induced dissociation are investigated and controlled by employing an experimental technique called impulsive molecular alignment. Here, a first laser pulse fixes the molecule in space, such that the molecular dynamics can be studied as a function of the molecular geometry with a second laser pulse. The experiments are placed within the context of the study and control of ultrafast molecular dynamics, where sub-femtosecond (10^-15 seconds) resolution in ever larger molecular systems represents the current frontier of research. The thesis presents the required background in strong field and molecular physics, femtosecond laser architecture and experimental techniques in a clear and accessible language that does not require any previous knowledge in these fields.

AuthorMalte Oppermann
PublisherSpringer
Published2014-04-11
ISBN-139783319053370
BindingHardcover
LanguageEnglish
SubjectsScience
TopicCosmology
SeriesSpringer Theses

Format: Hardcover

Language: English

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