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Monday, May 4, 2020 | History

2 edition of Investigation of the generation of high-density matter using high power lasers. found in the catalog.

Investigation of the generation of high-density matter using high power lasers.

Shahmardan Saadat

Investigation of the generation of high-density matter using high power lasers.

by Shahmardan Saadat

  • 73 Want to read
  • 17 Currently reading

Published .
Written in English


Edition Notes

Thesis (Ph. D.)--The Queen"s University of Belfast, 1985.

The Physical Object
Pagination1 v
ID Numbers
Open LibraryOL19799173M

  Hydrogen may be compressed to more t times liquid density by an implosion system energized by a high energy laser. This scheme makes possible efficient thermonuclear burn of Cited by:   Purchase High Power Lasers - 1st Edition. Print Book & E-Book. ISBN , Format: Ebook.

@article{osti_, title = {Rapid heating of matter using high power lasers}, author = {Bang, Woosuk}, abstractNote = {This slide presentation describes motivation (uniform and rapid heating of a target, opportunity to study warm dense matter, study of nuclear fusion reactions), rapid heating of matter with intense laser-driven ion beams, visualization of the expanding warm dense gold and. Lasers and Nuclei describes the generation of high-energy-particle radiation with high-intensity lasers and its application to nuclear science. A basic introduction to laser--matter interaction at high fields is complemented by detailed presentations of state of the art laser particle acceleration and elementary laser nuclear : Hardcover.

Study of Soft X-Ray Lasers in Å Region Observed in He-Like Al Plasma (H Kuroda et al.) Non-LTE Atomic Modeling for Laser Produced Plasmas (H Takabe et al.) Multiphoton Processes in Scattering and Ionization in an Intense Linearly-Polarized Field (G Csanak & L A Collins).   Physicists are planning to build lasers so powerful they could rip apart empty space. By Edwin Cartlidge Jan. 24, , AM. Inside a cramped laboratory in .


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Investigation of the generation of high-density matter using high power lasers by Shahmardan Saadat Download PDF EPUB FB2

Investigation of the generation of high-density matter using high power lasers. Author: Saadat, S. ISNI: Awarding Body: Queen's University Current Institution: Queen's University Belfast Date of Award: Availability of Full Text.

The High-Power Lasers and Applications Conference was held in Munich, June 20 - 22, The conference took place simultaneously with the "La International Congress and Trade Fair" at the Munich Fair Ground. The meeting was a continuation of a series of colloquia on elec­ tronic transition lasers previously held in the United States.

In this chapter we discuss the capabilities of modern laser facilities as applied to high energy density physics.

We consider the physical effects that occur when substances are exposed to high-power laser radiation: shock-wave and ultrahigh-pressure generation, cluster plasma explosions, formation of “hollow” ions and high magnetic by: 1. The laser generation of strong shock waves One more direction in the investigation at GPI RAS is in the use of powerful laser pulses for the generation of strong shock waves and their application in the study of the thermophysical and mechanical properties of matter under high pressure and high strain rate conditions [18, 39 ].

Lasers, pulsed power machines, high explosives and intense particle beams from accelerators are commonly used experimental tools to generate high energy density states in matter (Fortov et al.

the past few years allows for the generation and investigation of macroscopic samples of matter in states present in giant planets or the interior of the earth. Proton acceleration experiments and warm dense matter research using high power lasers.

The role is discussed of various factors that complicate the design of laser experiments: generation of high-energy non-Maxwell electrons, plasma and hydrodynamic instabilities, restrictions on.

Recent progress in high power lasers enables us to access a regime of high-energy-density and/or ultra-strong fields that was not accessible before, opening up a fundamentally new physical domain which includes laboratory astrophysics and laser nuclear physics.

High Power Laser Science and Engineering publishes research that seeks to uncover the underlying science and engineering in the fields of high energy density physics, high power lasers, advanced laser technology and applications and laser components.

PROCEEDINGS VOLUME High-Power Lasers Technology and Systems. Editor(s): Harro Front Matter: Volume Author(s): Proceedings of SPIE Investigation on scalable high-power lasers with enhanced 'eye-safety' for future weapon systems Author(s).

This paper presents a review of the work devoted to the creation and investigation of high-power pulsed uv, ir, and visible lasers pumped with an electron beam, a self-sustained discharge with uv preionization, and a discharge controlled and initiated by an electron beam.

Attention is focused on exciplex (XeCl, KrF, KrCl) lasers, lasers operating by atomic transitions of xenon, nonchain HF Author: V. Tarasenko. Current generation of high-repetition and high-intensity lasers as well as 4th generation light sources have opened the possibility to experimentally test quantum electrodynamics (QED) at the level where the details of multiple order expansions in the field propagators can.

Such a high density, higher than the relativistically enhanced critical density at the laser wavelength (γ h n c = × 10 21 cm −3 with γ h = in our conditions of T h = MeV) is Cited by: 5. generation of high peak power, femtosecond lasers.

Overview of high energy density and high field physics with high intensity short pulse lasers The physics accessible with this class of lasers is quite extreme. The science applications made possible.

Effects of High-Power Laser Radiation describes the interactions between high-power laser beams and matter. This book is divided into eight chapters that particularly focus on interactions such as heating, melting, vaporization, and plasma Edition: 1. Chapter 7 Lasers A short introduction in the generation of high energy and ultrashort laser pulses using Q-switching and mode locking will be given at or longitudinal (low power) electrical discharge.

It is heavily used in the material processing industry for cutting, and welding of File Size: KB. Part one introduces the fundamentals of semiconductor lasers, beginning with key principles before going on to discuss photonic crystal lasers, high power semiconductor lasers and laser beams, and the use of semiconductor lasers in ultrafast pulse generation.

Part two then reviews applications of visible and near-infrared emitting lasers. Solid-state lasers which offer multiple desirable qualities, including enhanced reliability, robustness, efficiency and wavelength diversity, are absolutely indispensable for many applications. The Handbook of solid-state lasers reviews the key materials, processes and applications of solid-state lasers across a wide range of fields.

Methods of design and fabrication of high-power diode lasers using proven semiconductor technologies are presented in a comprehensive fashion making this book an invaluable source of information for all scientists and engineers designing laser systems and applying the laser as a reliable and economic tool in a multitude of : Paperback.

Sichuan, China Academy of Engineering Physics and Nuclear Society, organized infounded in to bimonthly to monthly in Reports of major high-energy laser and particle beam technology, the basic theory, experimental and applied research results and latest developments, involving high-power laser and high power microwave and particle beam generation, transmission and its.

In a very comprehensive way this book covers all aspects of high power diode laser technology for materials processing. Basics as well as new application oriented results obtained in a government funded national German research project are described in detail.

Along the technological chain after a.Proc. SPIEHigh-Power Lasers and Applications X, (19 November ); doi: / Read Abstract + A nm yellow laser is developed for dermatological applications by single-pass frequency doubling of a linearly-polarized narrow linewidth nm Raman fiber laser in a periodically poled MgO-doped near-stoichiometric.The interaction of high-power laser light sources with matter has given rise to numerous applications including; fast ion acceleration; intense X-ray, gamma-ray, positron and neutron generation.