High Intensity X rays Interaction with Matter Processes in Plasmas Clusters Molecules and Solids 1st Edition by Stefan P Hau Riege – Ebook PDF Instant Download/Delivery: 3527636382, 9783527636389
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Product details:
ISBN 10: 3527636382
ISBN 13: 9783527636389
Author: Stefan P Hau Riege
High Intensity X rays Interaction with Matter Processes in Plasmas Clusters Molecules and Solids 1st Table of contents:
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Chapter 1: Fundamental Processes in X-ray-Matter Interactions
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Absorption, Scattering, and Emission of X-rays
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Photoelectric Effect, Compton Scattering, and Pair Production
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X-ray Fluorescence and Auger Effect
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Secondary Emissions: Photoelectrons and Auger Electrons
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Chapter 2: Interaction of X-rays with Plasmas
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Plasma Formation and X-ray Induced Ionization
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The Role of X-rays in Plasma Heating and Dynamics
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X-ray Radiation and Its Interaction with Plasma Electrons
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Plasmas in Astrophysical and Laboratory Settings
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Case Studies: X-ray Interaction in High-Energy Plasma Environments
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Chapter 3: X-ray Interactions with Clusters
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Atomic and Molecular Clusters: Definition and Structure
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X-ray Absorption and Scattering in Clusters
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Collective Effects in X-ray Interaction with Clusters
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Femtosecond Dynamics and Cluster Ionization by X-rays
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Experimental Observations of X-ray Interaction with Clusters
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Chapter 4: X-ray Interaction with Molecules
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X-ray Excitation of Molecular Orbitals
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X-ray Absorption Spectroscopy: Probing Molecular Structure
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Molecular Fragmentation and Ionization by High-Intensity X-rays
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X-ray Induced Chemical Reactions
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X-ray Spectroscopy of Biological and Chemical Molecules
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Chapter 5: X-ray Interaction with Solids
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X-ray Diffraction and Crystallography
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X-ray Absorption and Transmission in Solid Materials
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High-Energy X-rays and Solid-State Physics
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Effects of High-Intensity X-rays on Solid-State Systems
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Case Studies: X-ray Damage and Radiation Hardening of Materials
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Chapter 6: X-ray-Induced Processes in Nanomaterials
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The Behavior of Nanostructures Under High-Intensity X-rays
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X-ray Excited Electron Dynamics in Nanomaterials
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Nanostructure Synthesis and Characterization with X-rays
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Quantum Effects and X-ray Interaction in Nanosystems
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Chapter 7: X-ray Free Electron Lasers and Their Role in Matter Interaction
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The Technology Behind X-ray Free Electron Lasers (XFELs)
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Applications of XFELs in Studying Matter at the Atomic Scale
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XFELs in Plasmas, Molecules, and Solids: A New Frontier
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Experimental Techniques Using XFELs for High-Resolution Imaging
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Chapter 8: Computational Methods for Modeling X-ray Interactions
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Theoretical Models of X-ray-Matter Interaction
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Quantum Mechanics and Classical Approaches in X-ray Interaction Studies
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Computational Tools for Simulating X-ray Effects in Different Media
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Applications of Density Functional Theory (DFT) in X-ray Studies
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Chapter 9: Experimental Techniques and Diagnostic Tools
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X-ray Spectroscopy and Imaging Techniques
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Synchrotron Radiation and High-Intensity X-ray Sources
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Time-Resolved and Femtosecond X-ray Experiments
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Diagnostics of Plasma, Cluster, and Solid Matter with X-rays
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Chapter 10: Applications of High-Intensity X-ray Interactions
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X-ray Imaging in Material Science and Biology
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X-ray Probing of High-Energy States in Astrophysics
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Industrial Applications of High-Intensity X-rays
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X-ray Techniques for Environmental and Chemical Monitoring
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Chapter 11: Future Directions and Challenges in X-ray Research
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Advancements in High-Intensity X-ray Sources and Technology
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Emerging Applications in Medicine, Material Science, and Energy
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The Role of X-ray Research in Understanding Complex Matter
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Challenges in Theoretical, Experimental, and Computational Studies
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Tags: Stefan P Hau Riege, High Intensity X rays, Plasmas Clusters, Solids



