ABSTRACT

Introduction to Optical Metrology examines the theory and practice of various measurement methodologies utilizing the wave nature of light. The book begins by introducing the subject of optics, and then addresses the propagation of laser beams through free space and optical systems. After explaining how a Gaussian beam propagates, how to set up a collimator to get a collimated beam for experimentation, and how to detect and record optical signals, the text:

  • Discusses interferometry, speckle metrology, moiré phenomenon, photoelasticity, and microscopy
  • Describes the different principles used to measure the refractive indices of solids, liquids, and gases
  • Presents methods for measuring curvature, focal length, angle, thickness, velocity, pressure, and length
  • Details techniques for optical testing as well as for making fiber optic- and MEMS-based measurements
  • Depicts a wave propagating in the positive z-direction by ei(ωt – kz), as opposed to ei(kz – ωt)

Featuring exercise problems at the end of each chapter, Introduction to Optical Metrology provides an applied understanding of essential optical measurement concepts, techniques, and procedures.

chapter 1|36 pages

Introduction to Optics

chapter 2|15 pages

Laser Beams

chapter 3|31 pages

Sources, Detectors, and Recording Media

chapter 4|16 pages

Interferometry

chapter 5|124 pages

Techniques

chapter 6|20 pages

Length Measurement

chapter 8|18 pages

Optical Testing

chapter 9|10 pages

Angle Measurement

chapter 10|13 pages

Thickness Measurement

chapter 11|13 pages

Measurement of Velocity

chapter 12|11 pages

Pressure Measurement

chapter 13|32 pages

Fiber Optic- and MEM-Based Measurements

chapter 14|37 pages

Length Measurement