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Relativistic Electron Mirrors
Details
A dense sheet of electrons accelerated to close to the speed of light can act as a tuneable mirror that can generate bright bursts of laser-like radiation in the short wavelength range simply via the reflection of a counter-propagating laser pulse. This thesis investigates the generation of such a relativistic electron mirror structure in a series of experiments accompanied by computer simulations. It is shown that such relativistic mirror can indeed be created from the interaction of a high-intensity laser pulse with a nanometer-scale, ultrathin foil. The reported work gives a intriguing insight into the complex dynamics of high-intensity laser-nanofoil interactions and constitutes a major step towards the development of a relativistic mirror, which could potentially generate bright burst of X-rays on a micro-scale.
Nominated as an outstanding Ph.D. thesis by the Max Planck Institute for Quantum Optics, Garching, Germany Reports on the generation of a microscopic mirror structure accelerated to close to the speed of light Covers experimental and theoretical aspects in an illustrative manner Includes a comprehensive experimental study on laser-driven electron acceleration from nano-scale freestanding foils Includes supplementary material: sn.pub/extras
Inhalt
Theoretical Background.- Experimental Methods: Lasers, Targets and Detectors.- Electron Acceleration from Laser-Nanofoil Interactions.- Coherent Thomson Backscattering from Relativistic Electron Mirrors.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783319383910
- Lesemotiv Verstehen
- Genre Physics
- Auflage Softcover reprint of the original 1st ed. 2015
- Anzahl Seiten 117
- Herausgeber Springer, Berlin
- Größe H235mm x B155mm
- Jahr 2016
- EAN 9783319383910
- Format Kartonierter Einband
- ISBN 978-3-319-38391-0
- Veröffentlichung 13.09.2016
- Titel Relativistic Electron Mirrors
- Autor Daniel Kiefer
- Untertitel from High Intensity LaserNanofoil Interactions
- Gewicht 2117g
- Sprache Englisch