National Science Library of Georgia

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High-power laser-plasma interaction / C. S. Liu, V. K. Tripathi, Bengt Eliasson.

By: Contributor(s): Material type: TextTextPublisher: Cambridge : Cambridge University Press, 2019Description: 1 online resource (xx, 285 pages) : digital, PDF file(s)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781108635844 (ebook)
Subject(s): Additional physical formats: Print version: : No titleDDC classification:
  • 530.4/46 23
LOC classification:
  • QC718.5.P5 L58 2019
Online resources:
Contents:
Linear waves -- Resonance absorption and Brunel absorption -- Plasmonics surface plasma waves and their coupling to lasers -- Motion in a strong electromagnetic wave: ponderomotive force and self-generated magnetic field -- Laser electron acceleration -- Laser acceleration of ions -- Coherent radiation emission: free electron laser -- Self-focusing and filamentation -- Parametric instabilities -- Parametric instabilities in inhomogeneous plasma -- Nonlinear Schrodinger equation -- Vlasov and particle-in-cell simulations -- Strong electromagnetic field effects in plasma.
Summary: 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.
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Title from publisher's bibliographic system (viewed on 24 Apr 2019).

Linear waves -- Resonance absorption and Brunel absorption -- Plasmonics surface plasma waves and their coupling to lasers -- Motion in a strong electromagnetic wave: ponderomotive force and self-generated magnetic field -- Laser electron acceleration -- Laser acceleration of ions -- Coherent radiation emission: free electron laser -- Self-focusing and filamentation -- Parametric instabilities -- Parametric instabilities in inhomogeneous plasma -- Nonlinear Schrodinger equation -- Vlasov and particle-in-cell simulations -- Strong electromagnetic field effects in plasma.

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.

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