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Atomic Processes in Basic and Applied Physics

Atomic Processes in Basic and Applied Physics PDF Author: Viacheslav Shevelko
Publisher: Springer Science & Business Media
ISBN: 3642255698
Category : Science
Languages : en
Pages : 501

Book Description
The book is a comprehensive edition which considers the interactions of atoms, ions and molecules with charged particles, photons and laser fields and reflects the present understanding of atomic processes such as electron capture, target and projectile ionisation, photoabsorption and others occurring in most of laboratory and astrophysical plasma sources including many-photon and many-electron processes. The material consists of selected papers written by leading scientists in various fields.

Atomic Processes in Basic and Applied Physics

Atomic Processes in Basic and Applied Physics PDF Author: Viacheslav Shevelko
Publisher: Springer Science & Business Media
ISBN: 3642255698
Category : Science
Languages : en
Pages : 501

Book Description
The book is a comprehensive edition which considers the interactions of atoms, ions and molecules with charged particles, photons and laser fields and reflects the present understanding of atomic processes such as electron capture, target and projectile ionisation, photoabsorption and others occurring in most of laboratory and astrophysical plasma sources including many-photon and many-electron processes. The material consists of selected papers written by leading scientists in various fields.

Plasma Physics

Plasma Physics PDF Author: Alexander Piel
Publisher: Springer Science & Business Media
ISBN: 3642104916
Category : Science
Languages : en
Pages : 405

Book Description
This book is an outgrowth of courses in plasma physics which I have taught at Kiel University for many years. During this time I have tried to convince my students that plasmas as different as gas dicharges, fusion plasmas and space plasmas can be described in a uni ed way by simple models. The challenge in teaching plasma physics is its apparent complexity. The wealth of plasma phenomena found in so diverse elds makes it quite different from atomic physics, where atomic structure, spectral lines and chemical binding can all be derived from a single equation—the Schrödinger equation. I positively accept the variety of plasmas and refrain from subdividing plasma physics into the traditional, but arti cially separated elds, of hot, cold and space plasmas. This is why I like to confront my students, and the readers of this book, with examples from so many elds. By this approach, I believe, they will be able to become discoverers who can see the commonality between a falling apple and planetary motion. As an experimentalist, I am convinced that plasma physics can be best understood from a bottom-up approach with many illustrating examples that give the students con dence in their understanding of plasma processes. The theoretical framework of plasma physics can then be introduced in several steps of re nement. In the end, the student (or reader) will see that there is something like the Schrödinger equation, namely the Vlasov-Maxwell model of plasmas, from which nearly all phenomena in collisionless plasmas can be derived.

Plasmas

Plasmas PDF Author: C. F. Barnett
Publisher: Academic Press
ISBN: 1483218678
Category : Science
Languages : en
Pages : 517

Book Description
Applied Atomic Collision Physics, Volume 2: Plasmas covers topics on magnetically confined plasmas. The book starts by providing the history of fusion research and describing the various approaches in both magnetically and inertially confined plasmas. The text then gives a general discussion of the basic concepts and properties in confinement and heating of a plasma. The theory of atomic collisions that result in excited quantum states, particularly highly ionized impurity atoms; and diverse diagnostic topics such as emission spectra, laser scattering, electron cyclotron emission, particle beams, and bremsstrahlung are also considered. The book further tackles heating of plasma by energetic particles; the boundary or edge plasma and particle-surface interactions; and the role of atomic physics in hot dense plasmas. Physicists and people involved in plasma and fusion energy studies will find the book invaluable.

Physics in the Atomic Energy Program

Physics in the Atomic Energy Program PDF Author: Thomas H. Johnson
Publisher:
ISBN:
Category : Nuclear physics
Languages : en
Pages : 8

Book Description


Basic Atomic Interactions of Accelerated Heavy Ions in Matter

Basic Atomic Interactions of Accelerated Heavy Ions in Matter PDF Author: Inga Tolstikhina
Publisher: Springer
ISBN: 3319749927
Category : Science
Languages : en
Pages : 220

Book Description
This book provides an overview of the recent experimental and theoretical results on interactions of heavy ions with gaseous, solid and plasma targets from the perspective of atomic physics. The topics discussed comprise stopping power, multiple-electron loss and capture processes, equilibrium and non-equilibrium charge-state fractions in penetration of fast ion beams through matter including relativistic domain. It also addresses mean charge-states and equilibrium target thickness in ion-beam penetrations, isotope effects in low-energy electron capture, lifetimes of heavy ion beams, semi-empirical formulae for effective cross sections. The book is intended for researchers and graduate students working in atomic, plasma and accelerator physics.

Atomic Particles and Atom Systems

Atomic Particles and Atom Systems PDF Author: Boris M. Smirnov
Publisher: Springer
ISBN: 331975405X
Category : Science
Languages : en
Pages : 217

Book Description
This book presents physical units and widely used physical formulas, which are given together with conversion factors in various units. It includes frequently used atomic spectra and data for atoms, ions and molecules, as well as potential curves for diatomic molecules, and provides numerical parameters for transport phenomena in gases and plasmas. Further, the rate constants of a number of processes in atmospheric ionized air have been added to this second edition of the book. The numerical data has been selected from the information on atoms, atomic systems, atomic processes and models for atomic physics in this area, and the numerical parameters of atoms, ions and atom systems are included in periodical tables of elements.

Atomic Processes in Plasmas

Atomic Processes in Plasmas PDF Author: Roberto C. Mancini
Publisher: American Inst. of Physics
ISBN: 9781563969768
Category : Science
Languages : en
Pages : 0

Book Description
The 12th Topical Conference on Atomic Processes in Plasmas continued a biennial series begun in 1977 to provide a forum for researchers involved in areas of overlap between atomic and plasma physics. This interdisciplinary area is essential to progress in basic and applied research in both atomic and plasma physics. The papers in this proceedings volume cover topics in atomic and molecular processes in laboratory and astrophysical plasmas, atomic theory and experiment, atomic data compilation and databases, plasma atomic kinetics, X-ray sources and lasers, inertially and magnetically confined plasmas, z-pinch plasmas, atomic processes in dense plasmas, industrial plasmas, line profiles, and spectroscopic plasma diagnostics.

Atomic & Molecular Physics

Atomic & Molecular Physics PDF Author: National Research Council (U.S.). Committee on Atomic and Molecular Physics
Publisher: National Academies
ISBN:
Category : Science
Languages : en
Pages : 156

Book Description


Atomic Properties in Hot Plasmas

Atomic Properties in Hot Plasmas PDF Author: Jacques Bauche
Publisher: Springer
ISBN: 3319181475
Category : Science
Languages : en
Pages : 386

Book Description
This book is devoted to the calculation of hot-plasma properties which generally requires a huge number of atomic data. It is the first book that combines information on the details of the basic atomic physics and its application to atomic spectroscopy with the use of the relevant statistical approaches. Information like energy levels, radiative rates, collisional and radiative cross-sections, etc., must be included in equilibrium or non-equilibrium models in order to describe both the atomic-population kinetics and the radiative properties. From the very large number of levels and transitions involved in complex ions, some statistical (global) properties emerge. The book presents a coherent set of concepts and compact formulas suitable for tractable and accurate calculations. The topics addressed are: radiative emission and absorption, and a dozen of other collisional and radiative processes; transition arrays between level ensembles (configurations, superconfigurations); effective temperatures of configurations, superconfigurations, and ions; charge-state distributions; radiative power losses and opacity. There are many numerical examples and comparisons with experiment presented throughout the book. The plasma properties described in this book are especially relevant to large nuclear fusion facilities such as the NIF (California) and the ITER (France), and to astrophysics. Methods relevant to the central-field configurational model are described in detail in the appendices: tensor-operator techniques, second-quantization formalism, statistical distribution moments, and the algebra of partition functions. Some extra tools are propensity laws, correlations, and fractals. These methods are applied to the analytical derivation of many properties, specially the global ones, through which the complexity is much reduced. The book is intended for graduate-level students, and for physicists working in the field.

Atomic Spectroscopy and Radiative Processes

Atomic Spectroscopy and Radiative Processes PDF Author: Egidio Landi Degl'Innocenti
Publisher: Springer
ISBN: 8847028086
Category : Science
Languages : en
Pages : 432

Book Description
This book describes the basic physical principles of atomic spectroscopy and the absorption and emission of radiation in astrophysical and laboratory plasmas. It summarizes the basics of electromagnetism and thermodynamics and then describes in detail the theory of atomic spectra for complex atoms, with emphasis on astrophysical applications. Both equilibrium and non-equilibrium phenomena in plasmas are considered. The interaction between radiation and matter is described, together with various types of radiation (e.g., cyclotron, synchrotron, bremsstrahlung, Compton). The basic theory of polarization is explained, as is the theory of radiative transfer for astrophysical applications. Atomic Spectroscopy and Radiative Processes bridges the gap between basic books on atomic spectroscopy and the very specialized publications for the advanced researcher: it will provide under- and postgraduates with a clear in-depth description of theoretical aspects, supported by practical examples of applications.