Ionization and Plasma Dynamics of Single Large Xenon Clusters in Superintense XUV Pulses

Nonfiction, Science & Nature, Technology, Lasers, Science, Biological Sciences, Molecular Physics
Cover of the book Ionization and Plasma Dynamics of Single Large Xenon Clusters in Superintense XUV Pulses by Daniela Rupp, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Daniela Rupp ISBN: 9783319286495
Publisher: Springer International Publishing Publication: January 14, 2016
Imprint: Springer Language: English
Author: Daniela Rupp
ISBN: 9783319286495
Publisher: Springer International Publishing
Publication: January 14, 2016
Imprint: Springer
Language: English

At the heart of this thesis is the young field of free electron laser science, whose experimental and theoretical basics are described here in a comprehensible manner. Extremely bright and ultra short pulses from short wavelength free-electron lasers (FELs) have recently opened the path to new fields of research. The x-ray flashes transform all matter into highly excited plasma states within femtoseconds, while their high spatial and temporal resolution allows the study of fast processes in very small structures. Even imaging of single molecules may be within reach if ultrafast radiation damage can be understood and brought under control.

Atomic clusters have proven to be ideal model systems for light-matter interaction studies in all wavelength regimes, being size scalable, easy-to-produce gas phase targets with a simple structure. With FELs, "single cluster imaging and simultaneous ion spectroscopy" makes possible experiments under extremely well defined initial conditions, because the size of the cluster and the FEL intensity can be extracted from the scattering images. For the first time large xenon clusters up to micron radius were generated. Their single cluster scattering images were analyzed for cluster morphology and traces of the ultrafast plasma built-up during the femtosecond FEL pulse. The simultaneously measured single cluster ion spectra yield unprecedented insight into the ion dynamics following the interaction. The results will feed both future experimental effort and theoretical modeling.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

At the heart of this thesis is the young field of free electron laser science, whose experimental and theoretical basics are described here in a comprehensible manner. Extremely bright and ultra short pulses from short wavelength free-electron lasers (FELs) have recently opened the path to new fields of research. The x-ray flashes transform all matter into highly excited plasma states within femtoseconds, while their high spatial and temporal resolution allows the study of fast processes in very small structures. Even imaging of single molecules may be within reach if ultrafast radiation damage can be understood and brought under control.

Atomic clusters have proven to be ideal model systems for light-matter interaction studies in all wavelength regimes, being size scalable, easy-to-produce gas phase targets with a simple structure. With FELs, "single cluster imaging and simultaneous ion spectroscopy" makes possible experiments under extremely well defined initial conditions, because the size of the cluster and the FEL intensity can be extracted from the scattering images. For the first time large xenon clusters up to micron radius were generated. Their single cluster scattering images were analyzed for cluster morphology and traces of the ultrafast plasma built-up during the femtosecond FEL pulse. The simultaneously measured single cluster ion spectra yield unprecedented insight into the ion dynamics following the interaction. The results will feed both future experimental effort and theoretical modeling.

More books from Springer International Publishing

Cover of the book Fields of Logic and Computation II by Daniela Rupp
Cover of the book A Theatre Laboratory Approach to Pedagogy and Creativity by Daniela Rupp
Cover of the book Embodied Curriculum Theory and Research in Arts Education by Daniela Rupp
Cover of the book Why Religion and Spirituality Matter for Public Health by Daniela Rupp
Cover of the book Hybrid Machining Processes by Daniela Rupp
Cover of the book Natural Disasters, Foreign Trade and Agriculture in Mexico by Daniela Rupp
Cover of the book Climate Change Fictions by Daniela Rupp
Cover of the book Advances in Systematic Creativity by Daniela Rupp
Cover of the book Morphomechanics of Development by Daniela Rupp
Cover of the book Partial Least Squares Path Modeling by Daniela Rupp
Cover of the book An Introduction to Structural Mechanics for Architects by Daniela Rupp
Cover of the book Research Trends in Mathematics Teacher Education by Daniela Rupp
Cover of the book Cloud Computing and Services Sciences by Daniela Rupp
Cover of the book Cerebral Autoregulation by Daniela Rupp
Cover of the book Atlas of Elastosonography by Daniela Rupp
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy