Principles of Free Electron Lasers [electronic resource] / by Henry P. Freund, T.M. Antonsen, Jr.

Por: Freund, Henry P [author.]Colaborador(es): Antonsen, Jr., T.M [author.] | SpringerLink (Online service)Tipo de material: TextoTextoEditor: Cham : Springer International Publishing : Imprint: Springer, 2024Edición: 4th ed. 2024Descripción: XXVIII, 729 p. 349 illus., 159 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783031409455Tema(s): Engineering | Lasers | Technology and Engineering | Laser TechnologyFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 620 Clasificación LoC:T1-995Recursos en línea: Libro electrónicoTexto
Contenidos:
Introduction -- The Wiggler Field And Electron Dynamics -- Incoherent Undulator Radiation -- Coherent Undulator Radiation -- Stimulated Emission: Linear Theory -- Nonlinear Theory: Steady-State Analysis -- Nonlinear Theory: Time-Dependent Analysis -- Sideband Instabilities -- Wiggler Imperfections -- Coherent Harmonic Generation -- Oscillator Theory -- Oscillator Simulation -- Self-Amplified Spontaneous Emission -- Segmented Wiggler Configurations -- Optical Klystrons And High-Gain Harmonic Generation -- Electromagnetic-Wave Wigglers -- Chaos In Free-Electron Lasers.
En: Springer Nature eBookResumen: This book presents a comprehensive description of the physics of free-electron lasers starting from the fundamentals and proceeding through detailed derivations of the equations describing electron trajectories, and spontaneous and stimulated emission. Linear and nonlinear analyses are described, as are detailed explanations of the nonlinear simulation of a variety of configurations including amplifiers, oscillators, self-amplified spontaneous emission, high-gain harmonic generation, and optical klystrons. Theory and simulation are anchored using comprehensive comparisons with a wide variety of experiments. Provides a complete and comprehensive discussion of the physics of free-electron lasers; Discusses basic physical concepts, along with detailed derivations of the relevant particle dynamics; Describes a variety of important configurations in use today.
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Introduction -- The Wiggler Field And Electron Dynamics -- Incoherent Undulator Radiation -- Coherent Undulator Radiation -- Stimulated Emission: Linear Theory -- Nonlinear Theory: Steady-State Analysis -- Nonlinear Theory: Time-Dependent Analysis -- Sideband Instabilities -- Wiggler Imperfections -- Coherent Harmonic Generation -- Oscillator Theory -- Oscillator Simulation -- Self-Amplified Spontaneous Emission -- Segmented Wiggler Configurations -- Optical Klystrons And High-Gain Harmonic Generation -- Electromagnetic-Wave Wigglers -- Chaos In Free-Electron Lasers.

This book presents a comprehensive description of the physics of free-electron lasers starting from the fundamentals and proceeding through detailed derivations of the equations describing electron trajectories, and spontaneous and stimulated emission. Linear and nonlinear analyses are described, as are detailed explanations of the nonlinear simulation of a variety of configurations including amplifiers, oscillators, self-amplified spontaneous emission, high-gain harmonic generation, and optical klystrons. Theory and simulation are anchored using comprehensive comparisons with a wide variety of experiments. Provides a complete and comprehensive discussion of the physics of free-electron lasers; Discusses basic physical concepts, along with detailed derivations of the relevant particle dynamics; Describes a variety of important configurations in use today.

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