ABSTRACT

This comprehensive handbook gives a fully updated guide to lasers and laser technologies, including the complete range of their technical applications. The first volume outlines the fundamental components of lasers, their properties, and working principles.

Key Features:

• Offers a complete update of the original, bestselling work, including many brand-new chapters.

• Deepens the introduction to fundamentals, from laser design and fabrication to host matrices for solid-state lasers, energy level diagrams, hosting materials, dopant energy levels, and lasers based on nonlinear effects.

• Covers new laser types, including quantum cascade lasers, silicon-based lasers, titanium sapphire lasers, terahertz lasers, bismuth-doped fiber lasers, and diode-pumped alkali lasers.

• Discusses the latest applications, e.g., lasers in microscopy, high-speed imaging, attosecond metrology, 3D printing, optical atomic clocks, time-resolved spectroscopy, polarization and profile measurements, pulse measurements, and laser-induced fluorescence detection.

• Adds new sections on laser materials processing, laser spectroscopy, lasers in imaging, lasers in environmental sciences, and lasers in communications.

This handbook is the ideal companion for scientists, engineers, and students working with lasers, including those in optics, electrical engineering, physics, chemistry, biomedicine, and other relevant areas.

chapter 2|48 pages

Basic Laser Principles 1

chapter 3|25 pages

Interference and Polarization

chapter 7|18 pages

Nonlinear Optics

chapter 8|18 pages

Laser Beam Control

chapter 9|18 pages

Optical Detection and Noise

chapter 10|16 pages

Laser Safety

chapter 12|11 pages

Optical Components

chapter 13|7 pages

Optical Control Elements

chapter 15|6 pages

Opto-mechanical Parts

chapter 17|6 pages

Quasi-cw and Modulated Beams

chapter 18|11 pages

Short Pulses

chapter 19|30 pages

Ultrashort Pulses

chapter 22|10 pages

Chirped Pulse Amplification

chapter 23|32 pages

Optical Parametric Devices

chapter 26|5 pages

Basic Principles

chapter 27|25 pages

Free-space Optics

chapter 28|18 pages

Optical Waveguide Theory

chapter 29|9 pages

Fibre Optic Beam Delivery

chapter 30|14 pages

Positioning and Scanning Systems

chapter 32|5 pages

Beam Propagation