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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Fysik
    4. Materietillstånd

    Fundamentals of Charged Particle Transport in Gases and Condensed Matter

    AvRobert Robson,Ronald White

    Häftad, Engelska, 2021

    Del i serien Monograph Series in Physical Sciences

    769 kr

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    2 970 kr

    Beskrivning

    This book offers a comprehensive and cohesive overview of transport processes associated with all kinds of charged particles, including electrons, ions, positrons, and muons, in both gases and condensed matter. The emphasis is on fundamental physics, linking experiment, theory and applications. In particular, the authors discuss: The kinetic theory of gases, from the traditional Boltzmann equation to modern generalizations A complementary approach: Maxwell’s equations of change and fluid modeling Calculation of ion-atom scattering cross sections Extension to soft condensed matter, amorphous materials Applications: drift tube experiments, including the Franck-Hertz experiment, modeling plasma processing devices, muon catalysed fusion, positron emission tomography, gaseous radiation detectors Straightforward, physically-based arguments are used wherever possible to complement mathematical rigor.Robert Robson has held professorial positions in Japan, the USA and Australia, and was an Alexander von Humboldt Fellow at several universities in Germany. He is a Fellow of the American Physical Society.Ronald White is Professor of Physics and Head of Physical Sciences at James Cook University, Australia.Malte Hildebrandt is Head of the Detector Group in the Laboratory of Particle Physics at the Paul Scherrer Institut, Switzerland.

    Produktinformation

    • Utgivningsdatum:2021-03-31
    • Mått:156 x 234 x 23 mm
    • Vikt:594 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Monograph Series in Physical Sciences
    • Antal sidor:400
    • Förlag:Taylor & Francis Ltd
    • ISBN:9780367781903

    Utforska kategorier

    • Materietillstånd inom Naturvetenskap och teknik
    • Fysik inom Naturvetenskap och teknik

    Mer om författaren

    Robert Robson, FAPS, FRMetS, completed a PhD in theoretical physics at the Australian National University in 1972. He has lectured and researched in physics and specializes in electron and positron transport in gases and soft condensed matter. He was Alexander von Humboldt Fellow at the University of Düsseldorf, Germany and held the Hitachi Chair of Electrical Engineering at Keio University, Japan. Ronald White obtained his PhD in theoretical physics from James Cook University in 1997, and is now Associate Professor and Director of the JCU node of the Australian Research Council’s Centre of Excellence for Antimatter-Matter Studies. He specializes in kinetic theory and fluid modelling of charged particles in gases and soft matter. Malte Hildebrandt completed his PhD in experimental physics at the University of Heidelberg in 1999, where he worked on the development of particle detectors for high energy particle physics. After a postdoc at the University of Zürich, he joined the Paul Scherrer Institut, and has been head of the detector group in the Laboratory of Particle Physics since 2009.

    Innehållsförteckning

    • Monograph Series in Physical SciencesPrefaceAbout the AuthorsGlossary of Symbols and Acronyms1 IntroductionI Kinetic Theory Foundations2 Basic Theoretical Concepts: Phase and Configuration Space3 Boltzmann Collision Integral, H-Theorem, and Fokker–Planck Equation4 Interaction Potentials and Cross Sections5 Kinetic Equations for Dilute Particles in Gases6 Charged Particles in Condensed MatterII Fluid Modelling in Configuration Space7 Fluid Modelling: Foundations and First Applications8 Fluid Models with Inelastic Collisions9 Fluid Modelling with Loss and Creation Processes10 Fluid Modelling in Condensed MatterIII Solutions of Kinetic Equations11 Strategies and Regimes for Solution of Kinetic Equations12 Numerical Techniques for Solution of Boltzmann’s Equation13 Boundary Conditions, Diffusion Cooling, and a Variational Method14 An Analytically Solvable ModelIV Special Topics15 Temporal Non-Locality16 The Franck–Hertz Experiment17 Positron Transport in Soft-Condensed Matter with Application to PET18 Transport in Electric and Magnetic Fields and Particle Detectors19 Muons in Gases and Condensed Matter20 Concluding RemarksV Exercises and Appendices 331ExercisesAppendix A Comparison of Kinetic Theory and Quantum MechanicsAppendix B Inelastic and Ionization Collision Operators for Light ParticlesAppendix C The Dual Eigenvalue ProblemAppendix D Derivation of the Exact Expression for np(k)Appendix E Physical Constants and Useful FormulasReferencesIndex