Laser Heterodyning Laser Heterodyning
    • 119,99 €

Description de l’éditeur

Laser heterodyning is now a widespread optical technique, based on interference of two waves with slightly different frequencies within the sensitive area of a photo-detector. Its unique feature – preserving phase information about optical wave in the electrical signal of the photo-detector – finds numerous applications in various domains of applied optics and optoelectronics: in spectroscopy, polarimetry, radiometry, laser radars and Lidars, microscopy and other areas. The reader may be surprised by a variety of disciplines that this book covers and satisfied by detailed explanation of the phenomena. Very well illustrated, this book will be helpful for researches, postgraduates and students, working in applied optics.

GENRE
Science et nature
SORTIE
2009
18 septembre
LANGUE
EN
Anglais
LONGUEUR
365
Pages
ÉDITIONS
Springer Berlin Heidelberg
DÉTAILS DU FOURNISSEUR
Springer Science & Business Media LLC
TAILLE
9,7
Mo
Interferometry and Synthesis in Radio Astronomy Interferometry and Synthesis in Radio Astronomy
2017
Photons and Quantum Fluctuations Photons and Quantum Fluctuations
2020
Fusion Plasma Diagnostics with mm-Waves Fusion Plasma Diagnostics with mm-Waves
2013
Free Space Optical Systems Engineering Free Space Optical Systems Engineering
2017
Frontiers in Nonlinear Optics, The Sergei Akhmanov Memorial Volume Frontiers in Nonlinear Optics, The Sergei Akhmanov Memorial Volume
2021
Beam Propagation Method for Design of Optical Waveguide Devices Beam Propagation Method for Design of Optical Waveguide Devices
2015
A Brief Guide to Optical Spectroscopy of Trivalent Rare Earth Ions in Glasses A Brief Guide to Optical Spectroscopy of Trivalent Rare Earth Ions in Glasses
2026
Nonlinear Waves in a Goubau Line Nonlinear Waves in a Goubau Line
2026
Optical Fiber Lasers Optical Fiber Lasers
2026
Optical Technology Transfer and Innovation in Ophthalmic Imaging Optical Technology Transfer and Innovation in Ophthalmic Imaging
2025
FDTD Analysis of Plasmonic Devices FDTD Analysis of Plasmonic Devices
2025
Laser Resonators and Beam Propagation Laser Resonators and Beam Propagation
2025