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The book is devoted to the modern theory and experimental manifestation of Polarization Bremsstrahlung (PB) which arises due to scattering of charged particles from various targets: atoms, nanostructures (including atomic clusters, nanoparticle in dielectric matrix, fullerens, graphene-like two-dimensional atomic structure) and in condensed matter (monocrystals, polycrystals, partially ordered crystals and amorphous matter) The present book addresses mainly researchers interested in the radiative processes during the interaction between fast particles and matter. It also will be useful for post-graduate students specializing in radiation physics and related fields.
Bremsstrahlung -- Polarization. --- Physics --- Physical Sciences & Mathematics --- Electricity & Magnetism --- Bremsstrahlung --- Plasma radiation. --- Polarization. --- Polarization bremsstrahlung --- Physics. --- Atoms. --- Plasma (Ionized gases). --- Solid state physics. --- Plasma Physics. --- Solid State Physics. --- Atomic, Molecular, Optical and Plasma Physics. --- Cyclotron resonance --- High temperature plasmas --- Radiation --- Polarization (Nuclear physics) --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Chemistry, Physical and theoretical --- Matter --- Stereochemistry --- Solids --- Gaseous discharge --- Gaseous plasma --- Magnetoplasma --- Ionized gases --- Constitution
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This book introduces and reviews both theory and applications of polarizational bremsstrahlung, i.e. the electromagnetic radiation emitted during collisions of charged particles with structured, thus polarizable targets, such as atoms, molecules and clusters. The subject, following the first experimental evidence a few decades ago, has gained importance through a number of modern applications. Thus, the study of several radiative mechanisms is expected to lead to the design of novel light sources, operating in various parts of the electromagnetic spectrum. Conversely, the analysis of the spectral and angular distribution of the photon emission constitutes a new tool for extracting information on the interaction of the colliding particles, and on their internal structure and dynamical properties. Last but not least, accurate quantitative descriptions of the photon emission processes determine the radiative energy losses of particles in various media, thereby providing essential information required for e.g. plasma diagnostics as well as astrophysical and medical applications (such as radiation therapy). This book primarily addresses graduate students and researchers with a background in atomic, molecular, optical or plasma physics, but will also be of benefit to anyone wishing to enter the field. .
Bremsstrahlung -- Polarization. --- Bremsstrahlung. --- Bremsstrahlung --- Physics --- Physical Sciences & Mathematics --- Atomic Physics --- Light & Optics --- Polarization --- Polarization. --- Braking radiation --- Polarization bremsstrahlung --- Physics. --- Physical chemistry. --- Atoms. --- Matter. --- Atoms and Molecules in Strong Fields, Laser Matter Interaction. --- Physical Chemistry. --- Nuclear reactions --- Plasma radiation --- Radiation --- Polarization (Nuclear physics) --- Chemistry, Physical organic. --- Chemistry, Physical organic --- Chemistry, Organic --- Chemistry, Physical and theoretical --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Matter --- Stereochemistry --- Constitution
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