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Solid-State Laser Engineering [electronic resource] / by Walter Koechner.

By: Contributor(s): Series: Springer Series in Optical Sciences ; 1Publisher: New York, NY : Springer New York, 2006Description: XVI, 750 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780387293387
Subject(s): Genre/Form: Additional physical formats: Printed edition:: No titleDDC classification:
  • 621.36 23
LOC classification:
  • TA1671-1707
  • TA1501-1820
Online resources:
Contents:
Energy Transfer Between Radiation and Atomic Transitions -- Properties of Solid-State Laser Materials -- Laser Oscillator -- Laser Amplifier -- Optical Resonator -- Optical Pump Systems -- Thermo-Optic Effects -- Q-Switching -- Mode Locking -- Nonlinear Devices -- Damage of Optical Elements.
In: Springer eBooksSummary: Written from an industrial perspective, Solid-State Laser Engineering discusses in detail the characteristics, design, construction, and performance of solid-state lasers. Emphasis is placed on engineering and practical considerations; phenomenological aspects using models are preferred to abstract mathematical derivations. Since its first edition almost 30 years ago this book has become the standard in the field of solid-state lasers for scientists,engineers and graduate students. This new edition has been extensively revised and updated to account for recent developments in the areas of diode-laser pumping, laser materials and nonlinear crystals. Completely new sections have been added dealing with frequency control, the theory of mode-locking, femto second lasers, high efficiency harmonic generation, passive and acousto-optic Q-switching, semiconductor saturable absorber mirrors (SESAM) and peridically poled nonlinear crystals.
Item type: eBooks
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Energy Transfer Between Radiation and Atomic Transitions -- Properties of Solid-State Laser Materials -- Laser Oscillator -- Laser Amplifier -- Optical Resonator -- Optical Pump Systems -- Thermo-Optic Effects -- Q-Switching -- Mode Locking -- Nonlinear Devices -- Damage of Optical Elements.

Written from an industrial perspective, Solid-State Laser Engineering discusses in detail the characteristics, design, construction, and performance of solid-state lasers. Emphasis is placed on engineering and practical considerations; phenomenological aspects using models are preferred to abstract mathematical derivations. Since its first edition almost 30 years ago this book has become the standard in the field of solid-state lasers for scientists,engineers and graduate students. This new edition has been extensively revised and updated to account for recent developments in the areas of diode-laser pumping, laser materials and nonlinear crystals. Completely new sections have been added dealing with frequency control, the theory of mode-locking, femto second lasers, high efficiency harmonic generation, passive and acousto-optic Q-switching, semiconductor saturable absorber mirrors (SESAM) and peridically poled nonlinear crystals.

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