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Ksenzov, Dmitriy: Interaction of femtosecond X-ray pulses with periodical multilayer structures. 2010
Inhalt
Abstract
Table of contents
Motivation
1 Introduction
1.1 Synchrotron radiation sources
1.2 Free Electron Lasers
2 FEL radiation properties
2.1. Statistical analysis of the chaotic optical field from a SASE FEL
2.2. First experimental results of an X-ray free-electron laser
3 The present theory of the interaction soft X-ray radiation with medium
3.1. X-ray interactions and wave equations
3.2. Linear-optics reflection theory
3.3. Ultrafast processes
4 Different approaches of X-ray reflection from multilayers
4.1. Reflectivity properties of the periodical multilayer X-ray mirrors
4.2. Approach for sliced multilayer gratings
5 Optical properties of boron carbide
5.1. Boron carbide
5.2 Near edge X-ray absorption
5.3. Refractive index of boron carbide
6 Resonant soft X-ray reflectivity of multilayers based on B4C material
6.1. Mirror fabrication
6.2. Theoretical background
6.3 Experimental results
7 Reflection of soft X-ray FEL pulses by periodical multilayers
7.1. Basic formalism
7.2. Numerical simulation of fs-pulse responses from multilayers
7.3. Space-time transformation
7.4. Reconstruction of fs-pulses from spatially resolved ML response
7.5. Processes of the ionization: influence of high intensity
7.6. Possible experimental setup of the experiment at FLASH
Appendix A
Appendix B
Appendix C
Appendix D
References
List of Publications
Acknowledgements