Ultra-Broadly Tunable Light Sources Based on the Nonlinear Effects in Photonic Crystal Fibers
This thesis examines laser generation from the ultraviolet to the short edge of the mid-infrared band by exploiting the nonlinear effects in photonic crystal fibers (PCFs). Several different physical mechanisms are investigated by using homemade PCFs with elaborately customized dispersion profiles. A particular focus is on the development of fiber optical parametric amplifiers (FOPAs) and oscillators (FOPOs) based on the PCFs with a zero-dispersion wavelength of ca.1.06 μm. In particular, several schemes are proposed for solving the key problems involved in the application of FOPOs. These oscillators can be made more convenient to use by optimizing the wavelength-tuning mechanisms and made more energy-efficient with the help of specially designed cavity structures. Today’s oscillators are more reliable, powerful and maneuverable than ever. This thesis provides a systematic road map in connection with the study of nonlinear wavelength generation in PCFs, from their fiber design and technical fabrication, to their physical mechanism and experimental investigation.

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Ultra-Broadly Tunable Light Sources Based on the Nonlinear Effects in Photonic Crystal Fibers
This thesis examines laser generation from the ultraviolet to the short edge of the mid-infrared band by exploiting the nonlinear effects in photonic crystal fibers (PCFs). Several different physical mechanisms are investigated by using homemade PCFs with elaborately customized dispersion profiles. A particular focus is on the development of fiber optical parametric amplifiers (FOPAs) and oscillators (FOPOs) based on the PCFs with a zero-dispersion wavelength of ca.1.06 μm. In particular, several schemes are proposed for solving the key problems involved in the application of FOPOs. These oscillators can be made more convenient to use by optimizing the wavelength-tuning mechanisms and made more energy-efficient with the help of specially designed cavity structures. Today’s oscillators are more reliable, powerful and maneuverable than ever. This thesis provides a systematic road map in connection with the study of nonlinear wavelength generation in PCFs, from their fiber design and technical fabrication, to their physical mechanism and experimental investigation.

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Ultra-Broadly Tunable Light Sources Based on the Nonlinear Effects in Photonic Crystal Fibers

Ultra-Broadly Tunable Light Sources Based on the Nonlinear Effects in Photonic Crystal Fibers

by Lei Zhang
Ultra-Broadly Tunable Light Sources Based on the Nonlinear Effects in Photonic Crystal Fibers

Ultra-Broadly Tunable Light Sources Based on the Nonlinear Effects in Photonic Crystal Fibers

by Lei Zhang

Hardcover(1st ed. 2016)

$54.99 
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Overview

This thesis examines laser generation from the ultraviolet to the short edge of the mid-infrared band by exploiting the nonlinear effects in photonic crystal fibers (PCFs). Several different physical mechanisms are investigated by using homemade PCFs with elaborately customized dispersion profiles. A particular focus is on the development of fiber optical parametric amplifiers (FOPAs) and oscillators (FOPOs) based on the PCFs with a zero-dispersion wavelength of ca.1.06 μm. In particular, several schemes are proposed for solving the key problems involved in the application of FOPOs. These oscillators can be made more convenient to use by optimizing the wavelength-tuning mechanisms and made more energy-efficient with the help of specially designed cavity structures. Today’s oscillators are more reliable, powerful and maneuverable than ever. This thesis provides a systematic road map in connection with the study of nonlinear wavelength generation in PCFs, from their fiber design and technical fabrication, to their physical mechanism and experimental investigation.


Product Details

ISBN-13: 9783662483596
Publisher: Springer Berlin Heidelberg
Publication date: 10/15/2015
Series: Springer Theses
Edition description: 1st ed. 2016
Pages: 94
Product dimensions: 6.10(w) x 9.25(h) x (d)

Table of Contents

Introduction.- New wavelength generation based on PCF with two zero dispersion wavelengths (TZDW).- PCF based optical parametric amplifier (OPA).- Widely tunable optical parametric oscillator (OPO) based on PCF.- PCF based OPO with high energy conversion efficiency.- Conclusion.
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