CRC Handbook of Laser Science and Technology
The CRC Handbook of LASER SCIENCE and TECHNOLOGY discusses the following topics are discussed in detail: types and comparisons of laser sources, crystal and glass lasers, semiconductor lasers, organic dye and other liquid lasers, free-electron, and x-ray lasers, masers and laser safety.
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FOREWORD Charles H Townes
THIN FILMS AND COATINGS
OPTICAL MATERIALS FABRICATION
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2esonant absorber layer absorption alloy Aluminum oxide amorphous antireflection antireflection coating Appl applications beam bilayer bleached chemical coating coefficient composition crystals Curie point curve degenerate four-wave mixing density deposited diameter diamond Diamond tools dielectric diffraction disk dispersion doped effect energy exposure fabrication fluorescence fluoride four-wave mixing gelatin graded-index Grinding abrasive heat hologram holographic IEEE incident increased infrared Instrum ions IRQC Kerr laser glasses Lett magnetic magnetooptic melting metal neodymium Optical Fiber optical recording permission phase conjugation Photo Opt photoresist Phys playback polarization polymer precision machining Proc pulse quantum counter Quantum Electron rare earth readout recording characteristics reflectivity refractive index room temperature sensitivity shown in Figure silica silicon solution spatial frequency structure surface Table Tech techniques thermal thickness thin films threshold transition transmission transmittance trilayer vapor Verdet constant wave wavefront waveguide wavelength