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Atomic Collision Processes and Laser Beam Interactions with Solids

Author : M. Milosavljevic
Publisher : Nova Science Pub Incorporated
Page : 259 pages
File Size : 22,22 MB
Release : 1996-01-01
Category : Science
ISBN : 9781560724001

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Contents: Atomic Collision Processes; Atomic Physics with Antiprotons; Electron Impact Double Ionization of Ions; On Absorption Spectra of Magnesium-Like Ions: Mgi to Piv; An Optical Potential Approach to the Slow Elastic Electron & Positron Scattering on Atoms; Foundation of Approximative Treatment of the Turning Point In the ADK-Theory; Semiclassical Theory of Two-Electron Systems; Electron Impact Cross Sections For Sodium & Cadmium Atoms: Particle & Laser Beam Interaction with Solids; Optical Characterization of Growth & Interdiffusion Kinetics In Quantum Structures; The Simulation of Energetic Particle Collisions with Solids - A Visual Representation ; Sputter-Induced Erosion of Hard Coatings for Fusion Reactor First-Wall; An Investigation of Ion Beam Mixing In Amorphous Silicon.

Laser Interactions with Atoms, Solids and Plasmas

Author : Richard M. More
Publisher : Springer Science & Business Media
Page : 476 pages
File Size : 33,70 MB
Release : 2013-11-21
Category : Technology & Engineering
ISBN : 1489915761

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The aim of this NATO Advanced Study Institute was to bring together scientists and students working in the field of laser matter interactions in order to review and stimulate developmentoffundamental science with ultra-short pulse lasers. New techniques of pulse compression and colliding-pulse mode-locking have made possible the construction of lasers with pulse lengths in the femtosecond range. Such lasers are now in operation at several research laboratories in Europe and the United States. These laser facilities present a new and exciting research direction with both pure and applied science components. In this ASI the emphasis is on fundamental processes occurring in the interaction of short laser pulses with atoms, molecules, solids, and plasmas. In the case of laser-atom (molecule) interactions, high power lasers provide the first access to extreme high-intensity conditions above 10'8 Watts/em', a new frontier for nonlinear interaction of photons with atoms and molecules. New phenomena observed include multiphoton ionization processes, atomic collisions in the presence of a strong laser field, Coulomb explosion following rapid ionization of a molecule and the production of high harmonics of the laser source. Another important topic reviewed in this ASI is the lasercooling ofatoms.

Atoms, Solids, and Plasmas in Super-Intense Laser Fields

Author : Dimitri Batani
Publisher : Springer Science & Business Media
Page : 434 pages
File Size : 22,72 MB
Release : 2001-09-30
Category : Science
ISBN : 9780306466151

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Proceedings of the 30th Course of the International School of Quantum Electronics on Atoms, Solids and Plasmas in Super-Intense Laser Fields, held 8-14 July, in Erice, Sicily

Theoretical Studies Relating to the Interaction of Radiation with Matter: Atomic Collision Processes Occurring in the Presence of Radiation Fields

Author : P. R. Berman
Publisher :
Page : 14 pages
File Size : 48,68 MB
Release : 1986
Category :
ISBN :

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Work is reported in areas of: (1) Creation of Electronic State Coherences via Laser Assisted Collisions; (2) Collision Effects in Four Wave Mixing and Pump Probe Spectroscopy; (3) Modified Optical Bloch Equations in Solids; (4) Transient Spectra in Atom Field Interactions; (5) Collision Kernels and Transport Coefficients; (6) Collisions in Strong cw and Transient Laser Fields; (7) Quantum vs Classical Description of Laser Fields; (8) Intense Optical Noise Sources; and (9) Laser Assisted Collisions.

Laser-Beam Interactions with Materials

Author : Martin v. Allmen
Publisher : Springer Science & Business Media
Page : 206 pages
File Size : 11,73 MB
Release : 2013-03-07
Category : Science
ISBN : 3642578136

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Laser-Beam Interactions with Materials treats, from a physicist's point of view, the wide variety of processes that lasers can induce in materials. Physical phenomena ranging from optics to shock waves are discussed, as are applications in such diverse fields as semiconductor annealing, hole drilling and fusion plasma production. The approach taken emphasizes the fundamental ideas and their interrelations. The newcomer is given the necessary important background material, while the active research worker finds a critical and comprehensive review of the field.

Application of Particle and Laser Beams in Materials Technology

Author : P. Misaelides
Publisher : Springer Science & Business Media
Page : 668 pages
File Size : 14,13 MB
Release : 2013-03-09
Category : Technology & Engineering
ISBN : 9401584591

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The development of advanced materials with preselected properties is one of the main goals of materials research. Of especial interest are electronics, high-temperature and supemard materials for various applications, as well as alloys with improved wear, corrosion and mechanical resistance properties. The technical challenge connected with the production of these materials is not only associated with the development of new specialised preparation techniques but also with quality control. The energetic charged particle, electron and photon beams offer the possibility of modifying the properties of the near-surface regions of materials without seriously affecting their bulk, and provide unique analytical tools for testing their qUality. This volume includes most of the lectures and contributions delivered at the NATO-funded Advanced Study Institute "Application of Particle and Laser Beams in Materials Technology", which was held in Kallithea, Chalkidiki, in Northern Greece, from the 8th to the 21st of May, 1994 and attended by 73 participants from 21 countries. The aim of this ASI was to provide to the participants an overview of this rapidly expanding field. Fundamental aspects concerning the interactions and collisions on atomic, nuclear and solid state scale were presented in a didactic way, along with the application of a variety of techniques for the solution of problems ranging from the development of electronics materials to corrosion research and from archaeometry to environmental protection.

SPIG2018

Author : Goran Poparić
Publisher : MDPI
Page : 288 pages
File Size : 10,80 MB
Release : 2019-04-23
Category : Science
ISBN : 3038978507

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This Special Issue covers a wide range of topics from fundamental studies to applications of ionized gases. It is dedicated to four topics of interest: 1. ATOMIC COLLISION PROCESSES (electron and photon interactions with atomic particles, heavy particle collisions, swarms, and transport phenomena); 2. PARTICLE AND LASER BEAM INTERACTION WITH SOLIDS (atomic collisions in solids, sputtering and deposition, and laser and plasma interactions with surfaces); 3. LOW TEMPERATURE PLASMAS (plasma spectroscopy and other diagnostic methods, gas discharges, and plasma applications and devices); 4. GENERAL PLASMAS (fusion plasmas, astrophysical plasmas, and collective phenomena). This Special Issue of Atoms will highlight the need for continued research on ionized gas physics in different topics ranging from fundamental studies to applications, and will review current investigations.

Condensed Matter

Author : Sheldon Datz
Publisher : Academic Press
Page : 647 pages
File Size : 27,85 MB
Release : 2013-10-22
Category : Science
ISBN : 1483218694

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Applied Atomic Collision Physics, Volume 4: Condensed Matter deals with the fundamental knowledge of collision processes in condensed media. The book focuses on the range of applications of atomic collisions in condensed matter, extending from effects on biological systems to the characterization and modification of solids. This volume begins with the description of some aspects of the physics involved in the production of ion beams. The radiation effects in biological and chemical systems, ion scattering and atomic diffraction, x-ray fluorescence analysis, and photoelectron and Auger spectroscopy are discussed in detail. The final two chapters in the text cover two areas of ion beam materials modification: ion implantation in semiconductors and microfabrication. This text is a good reference material for physics graduate students, experimental and theoretical physicists, and chemists.