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天津大学非线性光学课程教学大纲课程编号:2020079课程名称:非线性光学学 时:32学时学 分:2分学时分配:授课:32 上机: 实验: 实践: 实践(周): 授课学院:精密仪器与光电子工程学院适用专业:光电子技术专业本科生先修课程:激光原理、物理光学一、课程的性质与目的属于光电子技术专业的专业课,属于提高课程,对于掌握现代光电子技术领域新技术和新方法是非常重要的课程之一。通过该课程的学习,掌握非线性光学领域的基础理论和若干重要研究方向及其进展。二、教学基本要求1.系统掌握非线性光学的基础理论,基本理论分析方法;2.通过学习非线性光学极化率理论、电磁波在非线性介质中传播的耦合波方程理论、相位匹配理论,掌握二阶非线性光学频率变换的倍频、和频、差频、参量振蒎、喇曼散射,三阶非线性效应的四波混频相位共轭;以及其它非线性光学效应中的自聚焦、光学双稳态;3.通过本课程的学习,使学生掌握电子科学与技术专业所必须的非线性光学专业知识,为从事光电子激光的应用奠定基础。三、教学内容绪论第一章非线性光学极化理论1、引言2、非线性电极化率3、非线性电极化率的非简谐振子模型4、非线性极化率的性质第二章电磁波在非线性介质内的传播1、电磁波在非线性介质内的传播过程2、稳态耦合波方程3、门雷罗威关系第三章光学二次谐波的产生及光混频1、光倍频及光混频的稳态小信号解2、相们匹配技术3、光倍频及光混频高转换效率时的稳态解4、有效非线性极化率5、高斯光束的倍频6、影响转换效率的因素7、腔内倍频过程第四章光学振荡及放大1、引言2、光学参量振荡的增益3、光学参量振荡的阈值4、光学参量振荡转换效率5、光学参量振荡输出频率的调谐6、光学参量振荡输出频率的波动第五章二阶非线性光学材料第六章激光束的自聚焦、自散焦和自调制1、引言2、激光束的稳态自聚焦3、小尺度自聚焦4、准稳态的自聚焦5、光束的自调制6、瞬态自聚焦第七章受激散射1、引言2、受激喇曼散射3、受激布里渊散射第八章光学相位共轭1、相位共轭的特性2、获得相们共轭波的非线性光学方法3、非线性光学相位共轭的应用第九章光学双稳态1、光学双稳态的理论2、光学双稳态器件的应用四、学时分配教学内容授课上机实验实践实践(周)绪论2第一章 非线性光学极化理论4第二章 电磁波在非线性介质内的传播4第三章 光学二次谐波的产生及光混频6第四章 光学振荡及放大4第五章 二阶非线性光学材料2第六章 激光束的自聚焦、自散焦和自调制3第七章受激散射3第八章光学相位共轭2第九章光学双稳态2合 计32五、评价与考核方式闭卷考试与平时成绩分别占80%和20%。六、教材与主要参考资料1. 激光技术(第二版),蓝信钜等,科学出版社 20032. 非线性光学,石顺祥等, 西安电子科技大学出版社,20033. 现代通信光电子学(第五版),亚里夫著,陈鸣鹤等译 电子工业出版社 20044. 晶体物理学基础(第二版),陈纲等编著, 科学出版社 20075. 全固态激光及非线性线性光学频率变换技术,姚建铨,徐德刚著 科学出版社 2007TU Syllabus for Nonlinear OpticsCode:2020079Title:Nonlinear OpticsSemester Hours:32Credits:2Semester Hour StructureLecture:48 Computer Lab: Experiment: Practice: Practice (Week):Offered by:The college of precision instrument and opto-electronic engineeringfor:Bachelor for opoelectronics specialty Prerequisite:physical optics, laser principle1. Objective l Understand the origin and basic concept of nonlinear optics;l Understand and analyze the principle of nonlinear optical susceptibilities, wave couple equation, phase match technolgiesl Understand and analyze some nonlinear optical effects of the second order and of the third order in the optical electric field. l Analyze some new phenomenon or effects and design some simple frequency conversion application with the tools presented in this course2. Course DescriptionThis course is designed for advanced undergraduate having some basic knowledge about physical and laser principle, and wishing to become knowledgeable in the basic principles that govern the operation of the light-matter interaction effects collectively known as nonlinear optics.we will study the origin, symmetry, and definitions of the nonlinear optical susceptibilities. The learning of course is mainly the description and understanding of nonlinear optical effects, including: the light wave interaction in the nonliear media; phase matching; Frequency conversion (e.g.second harmonic generation, deffferent fequency generation ,frequency mixing and optical parametric oscilaltion); Optical Kerr effect; Stimulated Scatterring; Optical phase conjugate; Optical bistability; Application of frequency coversion. 3. TopicsIntruductionChapter 1ThePhysical Origin of Nonlinear Optical Polarization1、Introduction2、Nonlinear susceptibility3、The anharmonic model of nolinear susceptibilty4、The characteristic of nonlinear optical susceptibilityChapter 2 The Electromagnetic Wave Propagation in the Nonliear Media1、Wave propagation in isotropic media2、Stable coupled wave equation3、The Melly-Rollway relationChapte r3Optical Second Harmonic Generation and Frequency Mixing1、Solution under the small signal condition2、Phase matched technology3、Solution under the large signal condition4、Effective nonlinear coefficient5、Second harmonic generation of Gaussian beam6、The conversion efficiency of second harmonic generation7、The process of intracavity second harmonic generationChapter 4Optical Parametric Oscillation and Amplification1、Introduction2、The gain of optical parametric oscillators3、The threshold of optical parametric oscillators4、The conversion efficiency of optical parametric oscillators5、Frequency tuning of optical parametric oscillatorsChapter 5The Material of second order nonlinear optical effectChapter 6The Optical Kerr Effect and Self focus1、Introduction2、The optical Kerr Effect3、Laser self focus effectChapter 7Simulated Scattering1、Introduction2、Simulated Raman Scattering3、Simulated Brillouin ScatteringChapter 8Optical Phase Conjugation1、Optical phase conjugation2、The method of obtaining optical phase conjugation3、The application of optical phase conjugationChapter 9Optical bistability1、The basic principle of optical bistability2、The application of optical bistability4. Semester Hour StructureTopicsLectureComputer Lab.ExperimentPracticePractice (Week)Introduction2ThePhysical Origin of Nonlinear Optical Polarization4The Electromagnetic Wave Propagation in the Nonliear Media4Optical Second Harmonic Generation and Frequency Mixing6Optical Parametric Oscillation and Amplification4The Material of second order nonlinear optical effect2The Optical Kerr Effect and Self focus3Simulated Scattering3Optical Phase Conjugation2Optical bistability2Sum:325. Grading20% Homeworks80% Exams6. Text-Book & Additional Readings1. Laser Technology(Second Edition),Lan Xinju etc.,Pulishing House of Science 20032. Nonlinear Optics,Shi Shunxiang etc., Publishing House of Xidian University,20033. Optical Electronics in Modern Communications Fifth Edition,Amnon Yariv,Chen Hem

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