标题: 雷射光与物质的腔内非线性交互作用
Intracavity Nonlinear Interactions of Laser Light and Matter
作者: 苏冠暐
Kuan-Wei Su
陈永富
Yung-Fu Chen
电子物理系所
关键字: 固态雷射;二极体激发;非线性交互作用;饱和吸收体;量子井;量子点;半导体饱和吸收镜;被动式Q开关;主动式Q开关;掺钕雷射晶体;锁模;人眼安全;受激拉曼散射;光参数震荡器;毫焦耳脉冲雷射;圆锥形二阶谐波产生;实空间 / 动量空间;垂直外共振腔面射型雷射;随机散射;弱局域化;近场 / 远场;雷射二极体堆;长距离关联;腔内;共用的腔 (完全重叠的腔);波函数;超快;solid-state laser;diode-pumped;nonlinear interaction;saturable absorber;quantum well;quantum dot;semiconductor saturable absorber mirror;passive Q-switching;active Q-switching;Nd-doped laser crystal;mode-locking;eye-safe;stimulated Raman scattering;optical parametric oscillator;mJ (milli-joule) pulse laser;conical second harmonic generation;real space / momentum space;vertical external cavity surface emitting laser;random scattering;weak localization;near-field / far-field;diode stack;long-range correlation;intracavity;shared cavity;wave function;ultra-fast
公开日期: 2006
摘要: 本论文系探讨雷射二极体激发式固态雷射共振腔内之雷射光与物质的非线性交互作用。 除了第一章的简介与文末的未来工作,将主要内容分为A、B两部分共五章。 第一部分主要探讨,作为光激发固态雷射之饱和吸收体或增益介质的半导体中之有吸收的非线性效应。 以InAs/GaAs、InGaAs/GaAs、InGaAsP/InP、AlGaInAs/InP为材料的量子点与量子井结构半导体,被使用在掺铷被动式Q开关与锁模脉冲雷射以及光驱动半导体雷射中。 第二部分则处理无吸收的非线性效应运用在可应用的雷射与波函数的研究。 题材包含人眼安全雷射、拉曼雷射、以及在具有随机缺陷之非线性晶体中的非共线二阶谐波产生。 论文中许多主题均可以是独立的研究题目,也各有其关键的研究成果与贡献。 但随着实验的进展,有许多有趣的现象与物理开始出现在原本不同的实验系统。 其实的物理深处本是相通相容的,藉由不同的实验系统,更能从不同的角度去看到物理的面貌。 而这里所要谈的,就是从研发并了解现今可实现的雷射系统与非线性效应开始,作为深入探讨这些交互作用的基石。
The author demonstrates the study of nonlinear interactions of laser light and matter inside cavities of diode pumped solid-state lasers. Besides introduction and future works, the author put main text in five chapters divided into two parts. In Part A, we are concerned with nonlinear effects with absorption in semiconductor which used as a saturable absorber or a gain medium in solid-state laser. Quantum-dot and quantum-well structures based on InAs/GaAs, InGaAs/GaAs, InGaAsP/InP, and AlGaInAs/InP were utilized in Nd-doped passively pulsed lasers and optical pumped semiconductor lasers. In Part B, we deal with interactions without absorption for applicable laser and the study of wave function. The discussion includes eye-safe lasers, Raman lasers, and noncollinear second harmonic generation in nonlinear crystal with random defects. All physics should be connected or sing in tune if we could have deeper understanding. Through researching and developing novel laser technologies in various experiment systems, we may see the face of physics from various viewpoints. What the author present here is the research on intracavity nonlinear interactions of laser light and matter, from studying existing feasible laser systems and nonlinear effects to be the groundwork of thorough understanding hereafter.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009221504
http://hdl.handle.net/11536/75680
显示于类别:Thesis


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  1. 150401.pdf
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  3. 150403.pdf
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  5. 150405.pdf
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  11. 150411.pdf
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  16. 150416.pdf

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