Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate

碩士 === 國立臺灣大學 === 光電工程學研究所 === 91 === This thesis is organized in to three parts : (1) the theory of second harmonic generation (SHG) by using two-dimentional nonlinear photonic crystal and quasi-phase match method, and (2)the fabrication of 1D and 2D periodically poled lithiμm niobate , and (3) th...

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Main Authors: Chao-Ching Hsu, 徐兆慶
Other Authors: Lung-Han Peng
Format: Others
Language:zh-TW
Published: 2003
Online Access:http://ndltd.ncl.edu.tw/handle/22069078623602777174
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spelling ndltd-TW-091NTU001240042016-06-20T04:15:27Z http://ndltd.ncl.edu.tw/handle/22069078623602777174 Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate 二維藍綠與紫外光非線性晶體雷射之研究 Chao-Ching Hsu 徐兆慶 碩士 國立臺灣大學 光電工程學研究所 91 This thesis is organized in to three parts : (1) the theory of second harmonic generation (SHG) by using two-dimentional nonlinear photonic crystal and quasi-phase match method, and (2)the fabrication of 1D and 2D periodically poled lithiμm niobate , and (3) the optical measurements , including temperature-resolved, angle-resolved, and wavelength-resolved SHG experiments. Several fabrication methods are used and compared. 1D PPLN with and 6.8μm period and 2D PPLN with 20x20μm period are successfully made. In particular, 6mm efficient length for the 2D PPLN is achieved, and the domain patterns are regular and fine over the whole range under O-ring. In the measurements , the results of temperature, angle, and wavelength tuning experiments agree well with theoretical prediction. In the wavelength-tuning experiment, 33% external efficiency and about 50% internal efficiency are achieved. Infrared ray laser (second harmonic), blue and green laser (third harmonic) and ultraviolet laser (fourth harmonic) are generated and observed simultaneously. Lung-Han Peng 彭隆瀚 2003 學位論文 ; thesis 62 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣大學 === 光電工程學研究所 === 91 === This thesis is organized in to three parts : (1) the theory of second harmonic generation (SHG) by using two-dimentional nonlinear photonic crystal and quasi-phase match method, and (2)the fabrication of 1D and 2D periodically poled lithiμm niobate , and (3) the optical measurements , including temperature-resolved, angle-resolved, and wavelength-resolved SHG experiments. Several fabrication methods are used and compared. 1D PPLN with and 6.8μm period and 2D PPLN with 20x20μm period are successfully made. In particular, 6mm efficient length for the 2D PPLN is achieved, and the domain patterns are regular and fine over the whole range under O-ring. In the measurements , the results of temperature, angle, and wavelength tuning experiments agree well with theoretical prediction. In the wavelength-tuning experiment, 33% external efficiency and about 50% internal efficiency are achieved. Infrared ray laser (second harmonic), blue and green laser (third harmonic) and ultraviolet laser (fourth harmonic) are generated and observed simultaneously.
author2 Lung-Han Peng
author_facet Lung-Han Peng
Chao-Ching Hsu
徐兆慶
author Chao-Ching Hsu
徐兆慶
spellingShingle Chao-Ching Hsu
徐兆慶
Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate
author_sort Chao-Ching Hsu
title Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate
title_short Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate
title_full Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate
title_fullStr Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate
title_full_unstemmed Two-Dimensional Blue, Green and UV Nonlinear Crystal Laser in Lithium Niobate
title_sort two-dimensional blue, green and uv nonlinear crystal laser in lithium niobate
publishDate 2003
url http://ndltd.ncl.edu.tw/handle/22069078623602777174
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