J4 ›› 2010, Vol. 27 ›› Issue (6): 641-649.

• 综述 •    下一篇

微纳结构非线性光学及其全光调控研究进展

易明芳1,2, 王沛1, 王小蕾1, 鲁拥华1, 明海1   

  1. 1 中国科学技术大学光学与光学工程系,安徽省光电子与技术重点实验室,安徽 合肥,230009; 
    2 安庆师范学院,安徽 安庆,246133
  • 收稿日期:2010-02-03 修回日期:2010-03-29 出版日期:2010-11-28 发布日期:2010-11-19
  • 作者简介:易明芳(1970-),女,安徽宣城人,博士研究生,主要研究方向为微纳结构调控光学非线性.Email:yimf@mail.ustc.edu.cn
  • 基金资助:

    国家自然科学基金(60977019)

Micro-nano-structure enhanced third-order optical nonlinearity and its development in all-optical tunable nonlinear devices

YI Ming-fang1,2, WANG Pei1, WANG Xiao-lei1, WEN Xiao-lei1,LU Yong-hua1   

  1. 1 Department of Optics and Optical Engeering, Anhui Key Laboratory of Optoelectronic Science and Technology, University of Science and Technology of China, Hefei 230026; 
    2 Anqing Teachers College, Anqing 246133, China
  • Received:2010-02-03 Revised:2010-03-29 Published:2010-11-28 Online:2010-11-19

摘要:

随着微纳光子学的提出与发展,在纳米尺度上操纵和控制光子,发展体积更小、速度更快的光子器件,实现全光集成,已成为国际研究前沿和新技术领域竞争的热点。其中以光子晶体、表面等离激元微纳结构为代表的微纳光子学研究及应用在国际上得到了广泛的重视和蓬勃发展,特别是其微纳结构的非线性光学、全光调控与器件的应用研究。本文主要综述了微纳结构增强的光学非线性及其非线性全光调控研究进展。

关键词: 非线性光学, 表面等离子体激元, 微纳光学与光子学, 全光调控

Abstract:

With the progress of micro-nano photonics, it has become the forefront of international research to tune optics in nano-scale. How to design smaller, faster and stronger nano-photonic devices, which can realize all-optical integration, has become the new technology, competition and hot spots. Of which the photonic crystal and surface plasmon structures, represented by the micro-nano photonics research and applications in the international community, has been widely appreciated and prosperity. And its micro-nano structure of nonlinear optics, all-optical control and devices applied research has been focused especially. This paper summarizes the micro-nano structure of the enhanced optical nonlinearity and nonlinear all-optical control research.

Key words: nonlinear optics, surface plasmons, micro-nano optics and photonics, all-optical control

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