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叶龙芳

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教授
博士生导师
硕士生导师
- 教师英文名称:Longfang Ye
- 电子邮箱:906fb42a07162f16084a09f080318f4b78b7ca8fe0fa32b5f8307d2d62e92d74374db47ebb9f3ae6da304bd4cbadeb09df398d525ed8ac2a946cf0a9f4f8bb7a99e753880098bbe6aa33d0a4085fa1bec31eff38cb09a6323b43ced9fdb49aac4e973d4731768a744c08245904e1222c3f7bdc919c0e05129a5b72ebd29b61bb
- 入职时间:2013-07-18
- 所在单位:电子科学与技术学院(国家示范性微电子学院)
- 学历:博士研究生毕业
- 性别:男
- 学位:工学博士学位
- 在职信息:在职
- 毕业院校:电子科技大学
访问量:
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[61]叶龙芳,Composite graphene-metal microstructures for enhanced multiband absorption covering the entire terahertz range.Carbon,2018,148317-325.
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[62]李伟文,叶龙芳.Modal Proportion Analysis in Antenna Characteristic Mode Theory.INTERNATIONAL JOURNAL OF ANTENNAS AND PROPAGATION,2019
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[63]叶龙芳,Broadband optical waveguide modulators based on strongly coupled hybrid graphene and metal nanoribbons for near-infrared applications.NANOSCALE,2019,11(7):3229-3239.
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[64]叶龙芳.A Graphene-Based Tunable THz Metamaterial Absorber.2018 International Conference on Microwave and Millimeter Wave Technology, ICMMT 2018 - Proceedings,2018,
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[65]叶龙芳,Near-Infrared Plasmonic Waveguide Modulator Based on Hybrid Graphene and Metal Nano-Strip Structure.2018 International Conference on Microwave and Millimeter Wave Technology, ICMMT 2018 - Proceedings,2018,
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[66]叶龙芳,Electrically Tunable Broadband Terahertz Absorption with Hybrid-Patterned Graphene Metasurfaces.NANOMATERIALS,2017,8(8):
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[67]叶龙芳.Wideband Design of a Q-Band 20×20-Element Double-Layer Partially-Corporate Fed Slotted Waveguide Array.2018 International Conference on Microwave and Millimeter Wave Technology, ICMMT 2018 - Proceedings,2018,
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[68]叶龙芳,Frequency-Reconfigurable Wide-Angle Terahertz Absorbers Using Single- and Double-Layer Decussate Graphene Ribbon Arrays.NANOMATERIALS,2017,8(10):
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[69]朱锦锋,叶龙芳.Ultraviolet absorption band engineering of graphene by integrated plasmonic structures.Optical Materials Express,8(11):3295-3306.
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[70]叶龙芳,Super subwavelength guiding and rejecting of terahertz spoof SPPs enabled by planar plasmonic waveguides and notch filters based on spiral-shaped units.Journal of Lightwave Technology,2018,36(20):4988-4994.