基于双面金属波导的纳米磁流体磁调制
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江西师范大学物理与通信电子学院,江西师范大学物理与通信电子学院,宜春学院物理科学与工程技术学院,江西师范大学物理与通信电子学院

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上海交通大学区域光纤通信网与新型光通信系统国家重点实验室开放课题(2008SH05)


Magnetic modulation of magneticfluid based on the symmetrical metalcladding optical waveguide
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Department of Physics, Jiangxi Normal University,,Department of Physics, Jiangxi Normal University.,School of Physics Science and Engineering Technology; Yichun University,Department of Physics, Jiangxi Normal University.

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    摘要:

    设计了一种双面金属包覆波导,其中作为样品室的导波层厚度达到毫米量级.在波导腔体中注入浓度为0.15%的水基四氧化三铁纳米磁流体,采用波长为860 nm的红外激光束小角度(小于5°)入射到该波导金属耦合层上,以激发波导中的超高阶导模,使纳米磁流体处于光波导的振荡场中.根据超高阶导模的高灵敏特性,对磁流体施加10 mT的调制磁场,检测到纳米磁流体的磁光信号上升和下降时间为2 ms.

    Abstract:

    A new type of symmetrical metalcladding optical waveguide structures is proposed. The guiding layer that supports the oscillating field is submillimeter scale and severs as the sample room. The waterbased Fe3O4 magnetic fluid with a volume fraction of 0.15% is injected into the sample room. The ultrahigh order modes are excited by a 860 nm laser beam on the structure with small incident angle (<5). Owing to the strong concentration of the magnetic field, the sensitivity of the ultrahighorder modes is very high. The rise and fall time of magnetic fluid is 2 ms when 10 mT magnetic field is applied.

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袁文,郭琴,肖平平,桑明煌.基于双面金属波导的纳米磁流体磁调制[J].红外与毫米波学报,2012,31(3):254~257]. YUAN Wen, GUO Qin, XIAO Ping-Ping, SANG Ming-Huang. Magnetic modulation of magneticfluid based on the symmetrical metalcladding optical waveguide[J]. J. Infrared Millim. Waves,2012,31(3):254~257.]

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  • 收稿日期:2011-02-28
  • 最后修改日期:2011-06-21
  • 录用日期:2011-06-24
  • 在线发布日期: 2012-07-02
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