Listing 1 - 10 of 26 | << page >> |
Sort by
|
Choose an application
The field of high-power laser-plasma interaction has grown in the last few decades, with applications ranging from laser-driven fusion and laser acceleration of charged particles to laser ablation of materials. This comprehensive text covers fundamental concepts including electromagnetics and electrostatic waves, parameter instabilities, laser driven fusion,charged particle acceleration and gamma rays. Two important techniques of laser proton interactions including target normal sheath acceleration (TNSA) and radiation pressure acceleration (RPA) are discussed in detail, along with their applications in the field of medicine. An analytical framework is developed for laser beat-wave and wakefield excitation of plasma waves and subsequent acceleration of electrons. The book covers parametric oscillator model and studies the coupling of laser light with collective modes.
Choose an application
Laser-plasma interactions --- Interactions laser-plasma --- Congresses --- Congrès --- Congrès
Choose an application
Laser-plasma interactions --- Interactions laser-plasma --- Congresses --- Congrès
Choose an application
Laser plasmas --- Laser-plasma interactions --- Interactions laser-plasma
Choose an application
Nanoparticles. --- Metals --- Laser-plasma interactions. --- Plasma chemistry. --- Reactivity.
Choose an application
The latest generation of high-power pulsed lasers has renewed interest in the ultra-relativistic effects produced by the interaction between laser beams and electrons. Synthesising previous research, this book presents a unitary treatment of the main effects that occur in the ultra-relativistic interactions between laser beams and electrons. It uses exact solutions of relativistic and classical quantum equations, including a new solution of the Dirac equation, to fully describe the field and model the main ultra-relativistic effects created within it.
Laser-plasma interactions. --- Optical physics. --- Optics and photonics.
Choose an application
Laser-plasma interactions --- Interactions laser-plasma --- Congresses --- Congrès --- Congresses. --- Congrès
Choose an application
The aim of this special collection of 46 peer-reviewed papers was to reveal the state-of-the-art trends in the understanding of the fundamental aspects of interactions between laser beams and materials, and the modelling and simulation of laser and plasma materials surface transformation and processing. A useful guide to the subject. Review from Book News Inc.: The 46 studies were selected from presentations at the third international conference, LAPAMS 2010, held in Algiers in November 2010. The invited papers discuss computing simulations of laser ablation, plume expansion, and plasma format
Lasers --- Plasma lasers --- Laser-plasma interactions --- Gas lasers --- Industrial applications --- LAPAMS --- Laser applications --- Plasma applications
Choose an application
Laser-plasma interaction is a continuously growing field with a broad range of applications in fundamental science, industry, and medicine. This book provides a comprehensive introduction to the physics of the interaction of intense laser pulses with high-temperature plasmas motivated by applications in high-energy-density physics and inertial confinement fusion. It combines the presentation of basic elements of the kinetics of charged particles in plasma and properties of electromagnetic waves with up-to-date developments related to nonlinear laser-plasma interactions, plasma heating, particle acceleration, excitation and mitigation of parametric instabilities. The book is based on the lectures taught by the author to students at master's and graduate levels. It provides original material combining qualitative descriptions of physical processes with a strict but accessible theoretical background and practical exercises.
Plasma (Ionized gases) --- Laser-plasma interactions. --- Plasmas (gaz ionisés) --- Interactions laser-plasma.
Choose an application
Laser induced breakdown spectroscopy (LIBS) is basically an emission spectroscopy technique where atoms and ions are primarily formed in their excited states as a result of interaction between a tightly focused laser beam and the material sample. The interaction between matter and high-density photons generates a plasma plume, which evolves with time and may eventually acquire thermodynamic equilibrium. One of the important features of this technique is that it does not require any sample preparation, unlike conventional spectroscopic analytical techniques. Samples in the form of solids, liqui
Laser spectroscopy. --- Laser-plasma interactions. --- Lasers --- Industrial applications. --- Interactions, Laser-plasma --- Laser beams --- Plasma (Ionized gases) --- Spectrum analysis
Listing 1 - 10 of 26 | << page >> |
Sort by
|