邓晓旭
导波光电子器件;非线性光子学器件。
个性化签名
- 姓名:邓晓旭
- 目前身份:
- 担任导师情况:
- 学位:
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学术头衔:
博士生导师, 教育部“新世纪优秀人才支持计划”入选者
- 职称:-
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学科领域:
光学
- 研究兴趣:导波光电子器件;非线性光子学器件。
邓晓旭,教授。
教育背景:哈尔滨工业大学应用物理系获得学士学位、硕士和博士学位。
工作经历:1992.4-2002.2,哈尔滨工业大学应用物理系教师;2002.3-2004.2,上海交通大学物理系,博士后研究人员;2004.3留上海交通大学物理系任教。
研究方向:导波光电子器件;非线性光子学器件。
承担的科研项目:1. 国家自然科学基金:基于导波共振技术共轭聚合物非线性光学参数测量新方法的研究;项目编号:60978056;项目经费:43万,项目负责人。2. 国家自然科学基金:自由空间耦合有机聚合物波导电光开关;项目编号:60544010;项目经费:15万,项目负责人。3. 2007新世纪优秀人才支持计划,50万。4. 上海市自然科学基金:双面金属包覆晶体波导电光调制器;项目编号:08ZR1410500;项目经费:10万,项目负责人。
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11
邓晓旭, Xiaoxu Deng, a Xiang Zheng, Zhuangqi Cao, Qishun Shen, and Honggen Li
APPLIED PHYSICS LETTERS 90, 151124 (2007),-0001,():
-1年11月30日
fast speed electro-optic polymer variable optical attenuator (VOA) is fabricated by utilizing cascaded attenuated-total-reflection technique. The proposed VOA demonstrates high dynamic range and low driving voltage. An ~200 ns response time of the device is obtained, and other measured parameters include a dynamic range up to 24.1 dB, a driving voltage of 39.6 V, and an insertion loss of 1.02 dB.
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邓晓旭, Jianhong Zhou, a Xiaoxu Deng, Zhuangqi Cao, and Qishun Shen Wei Wei, Zhijian Zhang, and Shixiang Xie
APPLIED PHYSICS LETTERS 88, 021106 (2006),-0001,():
-1年11月30日
prism-optical waveguide coupling system, which consists of a prism and a symmetrical metal-cladding polymer optical waveguide, is used to analyze the field-induced intensity variation due to the quadratic electro-optic (QEO) effect. As a result, not only the dc Kerr coefficient, but also the whole components of the QEO tensor of the polymer film are determined experimentally.
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【期刊论文】Investigation of second-order nonlinearity in poled-polymer during photobleaching
邓晓旭, Kaisheng Chen, Xiaoxu Deng, Feng Wang, Zhuangqi Cao, Qishun Shen
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-1年11月30日
The second-order nonlinearity of poled-polymer during photobleaching process is monitored with second harmonic generation(SHG) intensity enhanced by surface plasmon resonance(SPR) in an attenuated total reflection (ATR) configuration. The nonlinear coefficient d33 of the poled polymer is determined by comparing the SPR enhanced second harmonic generation(SHG) intensities with that from the calibrated quartz. Experimental results show that photobleaching process has less effect on the second-order nonlinearity of a poled cross-linked polymer than that of a poled side-chain polymer.
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