学术成果:
论文
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[1] 何晓勇·Investigation of Phonon Scattering on the Tunable Mechanisms of Terahertz Graphene Metamaterials·NANOMATERIALS,卷: 10期: 1
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[2] 何晓勇·Self-driven and ultrasensitive room-temperature terahertz photodetector based on graphene-Ta2NiSe5 van der Waals heterojunction·INFRARED PHYSICS & TECHNOLOGY,卷: 128
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[3] 何晓勇·Investigation of graphene-supported submillimeter adjustable metamaterial absorbers·JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS,卷: 41期: 4页: 827-835
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[4] 何晓勇·Carbon-based ultrabroadband tunable terahertz metasurface absorber·ADVANCED PHOTONICS NEXUS,3
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[5] 何晓勇·Independently tunable dual-band plasmon induced transparency enabled by graphene-based terahertz metamaterial·APPLIED PHYSICS EXPRESS,卷: 12期: 7
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[6] 何晓勇·3D Dirac Semimetal Metamaterial Supported Terahertz Tunable Dual-Functional Polarization Converter·IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS,卷: 31期: 5
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[7] 何晓勇·Tunable terahertz Dirac-semimetal hybrid plasmonic waveguides·OPTICAL MATERIALS EXPRESS,卷: 12期: 1页: 73-84
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[8] 何晓勇·Tunable terahertz Dirac semimetal metamaterials·JOURNAL OF PHYSICS D-APPLIED PHYSICS,卷: 54期: 23
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[9] 何晓勇·3D Dirac semimetal rectangular quad-hole array supported tunable THz extraordinary transmission·Journal of the Optical Society of America B: Optical Physics,v 42,n 6,p1243-1250
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[10] 何晓勇·3D Dirac semimetals supported tunable terahertz BIC metamaterials·NANOPHOTONICS,卷: 11期: 21页: 4705-4714
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[11] 何晓勇·Investigation of tunable Fano resonances based on the InSb metamaterials·MODERN PHYSICS LETTERS B,卷: 35期: 14
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[13] 何晓勇·Hybrid Plasmonic Waveguides with Tunable ENZ Phenomenon Supported by 3D Dirac Semimetals·LASER & PHOTONICS REVIEWS,卷: 18期: 9
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[14] 何晓勇·基于狄拉克半金属的太赫兹探测器研究进展简介·太赫兹科学与电子信息学报,2023年06期:767-781+800,16
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[15] 何晓勇·Investigation of 3D Dirac semimetal supported terahertz dielectric-loaded plasmonic waveguides·COMMUNICATIONS IN THEORETICAL PHYSICS,卷: 74期: 12
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[16] 何晓勇·A new LHe-free cryostat for the heterodyne SIS receiver for the Leighton Chajnantor Telescope·PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF JAPAN,卷: 76期: 5页: 980-988
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[17] 何晓勇·Tunable strontium titanate terahertz all-dielectric metamaterials·JOURNAL OF PHYSICS D-APPLIED PHYSICS,卷: 53期: 15
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[18] 何晓勇·Tunable terahertz broadband absorber based on elliptical graphene ribbon metamaterials·Applied Optics,v 64,n 11,p2926-2933
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[19] 何晓勇·3D Dirac Semimetal Elliptical Fiber Supported THz Tunable Hybrid Plasmonic Waveguides·IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS,卷: 29期: 5
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[20] 何晓勇·Tunable terahertz hybrid metamaterials supported by 3D Dirac semimetals·OPTICAL MATERIALS EXPRESS,卷: 13期: 2页: 413-422
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[21] 何晓勇·3D Dirac semimetal supported thermal tunable terahertz hybrid plasmonic waveguides·OPTICS EXPRESS,卷: 31期: 11页: 17201-17214
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[22] 何晓勇·3D Dirac semimetals-dielectric elliptical fiber supported tunable terahertz hybrid waveguide·APPLIED OPTICS,卷: 61期: 21页: 6152-6157
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[23] 何晓勇·Investigation of signal coupling circuit for NbN-based SIS mixer operated at 650 GHz·INFRARED PHYSICS & TECHNOLOGY,卷: 142
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[24] 何晓勇·理论与实践相结合的大学物理实验模式——以惠斯通电桥实验为例·教育教学论坛,2020年05期:383-386,4
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[25] 何晓勇·Investigation of graphene supported terahertz elliptical metamaterials·PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES,卷: 124
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[26] 何晓勇·3D Dirac semimetal rectangular quad-hole array supported tunable THz extrao'·JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS,卷: 42期: 6页: 1243-1250
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[27] 何晓勇·Graphene-supported tunable bidirectional terahertz metamaterials absorbers·APPLIED OPTICS,卷: 60期: 22页: 6520-6525
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[28] 何晓勇·太赫兹波导发展现状与展望·太赫兹科学与电子信息学报,2022年03期:241-260,20
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[29] 何晓勇·Tunable 3D Dirac-semimetals supported mid-IR hybrid plasmonic waveguides·OPTICS LETTERS,卷: 46期: 3页: 472-475
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[30] 何晓勇·三维狄拉克半金属的太赫兹双频超材料吸收器·上海师范大学学报(自然科学版),2023年05期:582-589,8
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[31] 何晓勇·3D Dirac Semimetal Supported Tunable Multi-Frequency Terahertz Metamaterial Absorbers·ADVANCED QUANTUM TECHNOLOGIES,卷: 7期: 4
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[32] 何晓勇·3D Dirac Semimetal Supported Tunable TE Modes·ANNALEN DER PHYSIK,卷: 534期: 4
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[33] 何晓勇·Investigation of strontium titanate spherical shell supported terahertz all-dielectric metamaterials·JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS,卷: 38期: 11页: 3466-3473
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[34] 何晓勇·Investigation of terahertz high Q-factor of all-dielectric metamaterials·OPTICS AND LASER TECHNOLOGY,卷: 146
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[35] 何晓勇·Quasi-bound states in the continuum in metal complementary periodic cross-shaped resonators at terahertz frequencies·OPTICS LETTERS,卷: 46期: 17页: 4370-4373
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[36] 何晓勇·Spin-multiplexed metasurface inverse-design based on a bi-directional deep neural network for terahertz wavefront control·OPTICA,卷: 12期: 4页: 505-517
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[37] 何晓勇·Direct detection of melamine in infant formula milk powder solution based on SERS effect of silver film over nanospheres·SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY,卷: 223
科研项目
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[1] 何晓勇,何晓勇.面向LCT望远镜的亚毫米波超构材料器件探测吸收特性研究,在研
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[2] 何晓勇.基于三维狄拉克半金属的太赫兹波混合模式波导调控机制研究,在研
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[3] 何晓勇.太赫兹石墨烯调制器的物理机制研究(浦江),验收
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[4] 何晓勇.可调谐太赫兹波全介质超材料调控机制研究,在研
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[5] 何晓勇.基于3D狄拉克半金属THz波调控器件研究,在研
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[6] 何晓勇.石墨烯-金属微结构Fano共振太赫兹波调制机制研究,验收
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[7] 何晓勇.太赫兹石墨烯调制器的物理机制研究,验收
专利成果
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[1] 何晓勇,林方婷,刘锋. 基于钛酸锶全介质超材料的太赫兹波调制器及其制备方法. 中国专利:ZL201910697425.5,2022-12-16.
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[2] 何晓勇,刘锋,林方婷. 一种基于石墨烯-金属复合微结构的THz 调制器及其制备. 中国专利:ZL201610654214.X,2018-11-02.
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[3] 何晓勇,刘锋,林方婷,石旺舟. 一种太赫兹石墨烯微结构调制器. 中国专利:申请状态(申请号:201610586405.7).
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[4] 何晓勇,刘世林,曹铎,林方婷,刘锋. 一种基于三维狄拉克半金属条带的多频亚毫米波吸收器. 中国专利:申请状态(申请号:2023113511288).
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[5] 何晓勇,姜世增,曹铎,刘德君,林方婷,刘锋. 一种基于石墨烯微结构条带的多频亚毫米波吸收器. 中国专利:申请状态(申请号:202311809244.X).
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[6] 何晓勇,刘锋,林方婷. 石墨烯基互补型非对称冂型结构THz调制器及制备方法. 中国专利:ZL201810236320.5,2020-12-18.
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[7] 何晓勇,石陈煜燚,张浩,刘锋,林方婷,肖桂娜. 一种基于锑化铟条带微结构太赫兹调制器及其制备方法. 中国专利:ZL201811473033.2,2022-07-29.
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[8] 何晓勇. 一种基于狄拉克半金属微结构的太赫兹波电控调制方法. 中国专利:申请状态(申请号:202010702690.0).
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[9] 刘锋,李晓温,石溪,许昊,何晓勇. 一种基于声子激元磁共振的窄带红外吸收器及制备方法. 中国专利:申请状态(申请号:201911384674.5).
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[10] 刘锋,赵炎亮,曹峻,石溪,刘德君,何晓勇. 一种光学Tamm态增强型石墨烯光电探测器及其制备方法. 中国专利:申请状态(申请号:202011551857.4).
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[11] 刘锋,曹峻,赵炎亮,何晓勇. 一种用于提取气-液界面膜的设备. 中国专利:ZL201710188782.X,2019-05-21.
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[12] 曹铎,刘锋,张毅闻,林方婷,何晓勇,石旺舟. 用于亚毫米波接收机标定的波束映射系统及标定方法. 中国专利:ZL202010366182.X,2022-07-29.
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[13] 何晓勇,王光清,成艳,曹铎,林方婷,刘锋. 一种基于三维狄拉克半金属椭圆纤维的太赫兹波混合模式波导结构. 中国专利:申请状态(申请号:202211257242X).
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[14] 曹铎,刘锋,林方婷,张毅闻,何晓勇,石旺舟. 一种超高介电常数介质薄膜的制备方法. 中国专利:ZL202010339064.X,2023-03-28.
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[15] 何晓勇,成艳,李佳欣,曹铎,林方婷,刘锋. 一种基于三维狄拉克半金属ENZ 现象的中红外调制器. 中国专利:申请状态(申请号:202410068737.0).
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[16] 何晓勇,冷晋,曹铎,林方婷,刘锋. 一种基于钛酸锶球壳结构的可调太赫兹波超材料吸收器. 中国专利:ZL202111133308.X,2022-10-28.
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