中国计量大学太赫兹技术与应用研究所

2022年发表论文

[01] Pengfei Wang, Fengyan He, Jianjun Liu, Fangzhou Shu, Bin Fang, Tingting Lang, Xufeng Jing, and Zhi Hong, Ultra-high-Q resonances in terahertz all-silicon metasurfaces based on bound states in the continuum, Photonics Research 10, 2743(2022)
[02] Pan, Gui-Ming; Yang, Li-Feng; Shu, Fang-Zhou; Meng, Yan-Long; Hong, Zhi; Yang, Zhong-Jian, Tailoring magnetic dipole emission by coupling to magnetic plasmonic anapole states, Photonics Research 10, 2032(2022).
[03] Jing, Xufeng; Qin, Guihong; Zhang, Peng, Broadband silicon-based tunable metamaterial microfluidic sensor, Photonics Research 10, 2876(2022).
[04] Zhang, Dong-Qin; Tao, Yi; Pan, Gui-Ming; Jin, Zhong-Wei; Fang, Bin; Hong, Zhi; Shu, Fang-Zhou, switchable transmissive and reflective metadevices based on the phase transition of vanadium dioxide, OPTICS LETTERS 47, 673(2022).
[05] Cen, Wenyang; Lang, Tingting; Wang, Jinfeng; Xiao, Meiyu, High-Q Fano Terahertz resonance based on bound states in the continuum in All-dielectric metasurface, Appl. Surface. Sci. 575, 151723(2022).
[06] Zhang, Dong-Qin; Pan, Gui-Ming; Jin, Zhong-Wei; Shu, Fang-Zhou; Jing, Xu-Feng; Hong, Zhi; Shen, Chang-Yu, Tunable dielectric metasurfaces by structuring the phase-change material, Opt. Express 30, 4312(2022).
[07] Wu, Jingwen; Yuan, Tingting; Liu, Jianjun; Qin, Jianyuan; Hong, Zhi; Li, Jiusheng; Du, Yong, Terahertz Metamaterial Sensor with Ultra-High Sensitivity and Tunability Based on Photosensitive Semiconductor GaAs, IEEE Sensors J. 22, 15961(2022).
[08] Wan, Mei; Fang, Jiyuan; Xue, Jiadan; Liu, Jianjun; Qin, Jianyuan; Hong, Zhi; Li, Jiusheng; Du, Yong, Pharmaceutical Cocrystals of Ethenzamide: Molecular Structure Analysis Based on Vibrational Spectra and DFT Calculations, Int. J. Mol. Sci. 23, 8550(2022).
[09] Zhang, Jinhui; Lang, Tingting; Hong, Zhi; Liu, Jianjun; Wang, Ping, Sensitive Detection of Aspartame and Vanillin by Combining Terahertz Fingerprinting with a Metamaterial, IEEE Sensors J. 22, 16513(2022).
[10] Cen, Wenyang; Lang, Tingting; Hong, Zhi; Liu, Jianjun; Xiao, Meiyu; Zhang, Jinhui; Yu, Zhenyu, Ultrasensitive Flexible Terahertz Plasmonic Metasurface Sensor Based on Bound States in the Continuum, IEEE Sensors J. 22, 12838(2022).
[11] Yu, Zhenyu; Lang, Tingting; Hong, Zhi; Liu, Jianjun; Shen, Changyu, Sensors for simultaneous measurement of temperature and humidity based on all-dielectric metamaterials, Opt. Express 30, 18821(2022).
[12] Jing, Xufeng; Tang, Xiaoyan; Tian, Ying; Kong, Zhe; Li, Chenxia; Shen, Changyu; Hong, Zhi, Enhancement of Diffraction Efficiency Based on the Addition Principle of Coded Digital Gratings, J. Lightwave Technol. 40 (1), 136-142(2022).
[13] Fang, B; Feng, DT; Chen, P; Shi, LJ; Cai, JH; Li, JM; Li, CX; Hong, Z; Jing, XF, Broadband cross-circular polarization carpet cloaking based on a phase change material metasurface in the mid-infrared region, Front. of Phys 17 (5), 53502(2022).
[14] Li, YY; Fang, B; Yang, K; Jin, YX; Li, CX; Hong, Z; Lu, JX; Wu, YL; Jing, XF; Independent adjustment of the transmission amplitude and phase based on the double-sided all-dielectric encoding metasurface, Opt. Commun. 515, 128181(2022).
[15] Zhang, CC; Li, CX; Fang, B; Liu, JJ; Hong, Z; Jing, XF; Transmission terahertz power beam splitter based on a single-layer metal metasurface, Appl. Opt. 61 (14), 4153-4159(2022).
[16] Chai, FM; Fang, B; Li, CX; Hong, Z; Jing, XF; Highly sensitive biosensor based on an all-dielectric asymmetric ring metasurface, Appl. Opt. 61 (6), 1349-1356(2022).
[17] Li, Yiyun; Jin, Yongxing; Jing, Xufeng; Shi, Lijiang; Li, Chenxia; Hong, Zhi, Broadband convolutional scattering characteristics of all dielectric transmission Pancharatnam-Berry geometric phase metasurfaces, Optica Applicata 52, 297(2022).
[18] Shi, Siqi; Yang, Kai; Ni, Yiwei; Zong, Zhengming; Ke, Lan; Li, Chenxia; Jing, Xufeng, Oblique incident achromatic cloaking based on all-dielectric multilayer frame metasurfaces, Appl. Phys. A 128, 1085(2022).
[19] Wang, Qingyu; Li, Chenxia; Fang, Bo; Jing, Xufeng, Multi-Function Reflective Vector Light Fields Generated by All-Dielectric Encoding Metasurface, Materials 15, 8260(2022).
[20] He, Xuejun; Lin, Feng; Huang, Wenkang; Li, Chenxia; Jing, Xufeng, Far-field scattering control of wave based on all-dielectric blazed encoding metagrating, Laser Physics 32, 116204(2022).
[21] Chen, Yi; Li, Ruisi; Huang, Wenkang; Wu, Yinglai; Lu, Jianxun; Ke, Lan; Li, Chenxia; Jing, Xufeng, Electromagnetic multi-beam steering of matrix pattern-encoded metasurfaces, Laser Phys. Lett. 19, 116206(2022).
[22] Liang, Yu; Jin, Yongxing; Lu, Jianxun; Wu, Yinglai; Li, Chenxia; Jing, Xufeng, Vortex beam generator based on single-layer porous metasurface, Opt. Commun. 519, 128407(2022).
[23] Chen, Peng; Fang, Bo; Li, Jianmin; Wang, Zhen; Cai, Jinhui; Lu, Jianxun; Wu, Yinglai; Li, Chenxia; Jing, Xufeng, Flexible control of the focal spot with encoding metalens based on the digital addition principle of metasurfaces, Opt. Laser Eng. 156, 107084(2022).
[24] Zhao, TQ; Fang, B; Chen, P; Ke, YH; Kong, Z; Shen, CY; Li, CX; Jing, XF; High Efficiency Flexible Control of Wave Beams Based on Addition and Subtraction Operations on All Dielectric Reflection Metasurfaces; IEEE Sensors J. 22 (5), 4057-4068.
[25] Zhao, TQ; Wang, QY; Li, M; Fang, B; Chen, P; Lu, JX; Li, CX; Jing, XF; Cross-Polarization Carpet Cloaking Based on Polarization Conversion Metasurfaces; IEEE Sensors J. 22 (7), 6509-6517(2022).
[26] Zhao, Tianqi; Fang, Bo; Huang, Wenkang; Lu, Jianxun; Wu, Yinglai; Shen, Changyu; Li, Chenxia; Jing, Xufeng, Omnidirectional rectangular beam steering for terahertz waves based on Pancharatnam-Berry phase encoding metasurfaces, Surface & Interface 31, 102021(2022).
[27] Zhou, Pengwei; Fang, Bo; Zhao, Tianqi; Jing, Xufeng, Improvement of beam shaping on a metasurface by eliminating the interaction between coding unit, Appl. Opt. 61, 4900(2022).
[28] Li, Jianmin; Chen, Peng; Fang, Bo; Cai, Jinhui; Zhang, Le; Lu, Jianxun; Wu, Yinglai; Huang, Wenkang; Xu, Libo; Li, Chenxia, Asymmetric spatial power beam splitter based on all dielectric metasurface with transmission phase, Optoelectro. Adv. Mater. 16, 179(2022).
[29] Shi, Siqi; Yang, Kai; Jing, Xufeng, Angular modulation of terahertz wavefront scattering based on all-silicon dielectric coded metasurface grating, J. Optoelectro. Adv. Mater. 24, 91(2022).
[30] Li, Jianmin; Chen, Peng; Fang, Bo; Cai, Jinhui; Zhang, Le; Wu, Yinglai; Jing, Xufeng, Polarization dependent high refractive index metamaterial with metallic dielectric grating structure in infrared band, Optica Applicata 52, 441(2022).
[31] Wei, HL; Cui, FY; Guo, WG; Wu, YL; Lu, JX; Huang, WK; Xu, LB; Li, RS; Li, CX, Jing, XF; Far-field scattering regulation of all dielectric material metagratings based on the addition principle of coding elements, J. EM Waves & Appl. 36, 2435(2022).
[32] Cheng HL, Fang B, Huang WK, Li RS, Shen CY, Ke L, Jing XF, Li CX, Hong Z, Far-field steering of beams based on dynamic encoding metasurface, Opt. & Laser Technol. 156, 108520(2022).
[33] Guo, HQ; Li, CY; Tang, XY; Li, CX; Shen, CY; Shi, LJ; Hong, Z; Jing, XF; Multi-angle forward scattering of all-dielectric coded nanoparticles, Opt. Commun. 503, 127453(2022).
[34] Li, YY; Fang, B; Jin, YX; Shi, LJ; Li, CX; Qian, JQ; Hong, Z; Jing, XF; Multi-function scattering beam regulation based on the superposition method of geometric phase coded metasurface sequences, Opt. Commun. 502, 127405(2022).
[35] Shen, CY; Chen, XM; Huang, ZL; Wang, ZH; Liu, JX; Deng, HT; Liu, DJ; Shu, FZ; High sensitivity and fast response optical fiber nucleic acid sensor, Opt & Lase. Technol. 154, 108271(2022).
[36] Deng, HT; Chen, XM; Huang, ZL; Kang, SQ; Zhang, WJ; Li, HL; Shu, FZ; Lang, TT; Zhao, CL; Shen, CY; Optical Fiber Based Mach-Zehnder Interferometer for APES Detection, Sensors 21,5870(2022).
[37] Pan, Xinghang; Han, Ting; Long, Jing; Xie, Binbin; Du, Yong; Zhao, Yanying; Zheng, Xuming; Xue, Jiadan, Excited state proton transfer of triplet state p-nitrophenylphenol to amine and alcohol: a spectroscopic and kinetic study, phys. Chem. Chem Phys. 24, 18427(2022).
[38] Zhu, ZH; Yan, DX; Li, XJ; Zhang, L; Qiu, GH; Li, JN, Polymer negative curvature ring-core fiber for OAM modes guidance, Appl. Opt. 61, 10451.
[39] Li, XJ; Liu, HD; Hou, XM; Yan, DX, Dynamic Tunable Meta-Lens Based on a Single-Layer Metal Microstructure, Photonics 9, 9120917.
[40] Qiu, Y; Yan, DX; Feng, QY; Li, XJ; Zhang, L; Qiu, GH; Li, JN, Vanadium dioxide-assisted switchable multifunctional metamaterial structure, Opt. Express 30, 26544(2022).
[41] Li, XJ; Ma, C; Yan, DX; Guo, SH; Zhang, L; Yang, J; Zhao, Y; Zhou, WD, Enhanced trace-amount terahertz vibrational absorption spectroscopy using surface spoof polarization in metasurface structures, Opt. Lett. 47, 2446(2022).
[42] Cao, MX; Wang, JC; Yuen, MMF; Yan, DX, Realization of Multifunctional Metamaterial Structure Based on the Combination of Vanadium Dioxide and Graphene, Nanomater. 12, 2883(2022).
[43] Li, XJ; Yang, J; Yan, DX; Guo, SH; Zhao, Y; Xu, XY; Zhou, WD, Highly enhanced trace amount terahertz fingerprint spectroscopy by multiplexing surface spoof plasmon metasurfaces in a single layer, Opt. Commun. 525, 128777(2022).
[44] Yan, DX; Feng, QY; Yang, J; Li, XJ; Zhang, L; Zhao, Y; Li, JN, Boosting the terahertz absorption spectroscopy based on the stretchable metasurface, Phys. Chem. Chem. Phys DOI10.1039/d2cp04618k
[45] Liu, PA; Li, WP; Chen, NC; Ma, C; Li, XJ; Yan, DX, Enhancing the Terahertz Absorption Spectrum Based on the Low Refractive Index All-Dielectric Metasurface, Photonics 9, 848(2022).
[46] Feng, QY; Yan, DX; Li, XJ; Li, JN, Realization of absorption, filtering, and sensing in a single metamaterial structure combined with functional materials, Appl. Opt. 61, 4336(2022).
[47] Yan, DX; Wang, Y; Qiu, Y; Feng, QY; Li, XJ; Li, JN; Qiu, GH; Li, JS, A Review: The Functional Materials-Assisted Terahertz Metamaterial Absorbers and Polarization Converters, Photonics 9, 334(2022).
[48] Yuan, ZW; Wang, Y; Yan, DX; Cao, MX; Meng, M; Li, XJ; Sun, S, Study on the high birefringence and low confinement loss terahertz fiber based on the combination of double negative curvature and nested claddings, J. Phys. D 55, 115106(2022).
[49] Yan, DX; Feng, QY; Yuan, ZW; Meng, M; Li, XJ; Qiu, GH; Li, JN, Wideband switchable dual-functional terahertz polarization converter based on vanadium dioxide-assisted metasurface, Chn Phys B 31, 014211(2022).
[50] Yan, DX; Li, XJ; Ma, C; Qiu, GH; Cao, MX; Li, JN; Guo, SH, Terahertz Refractive Index Sensing Based on Gradient Metasurface Coupled Confined Spoof Surface Plasmon Polaritons Mode, IEEE Sensor J. 22, 324(2022).
[51] Yan, DX; Li, EP; Feng, QY; Li, XJ; Guo, SH, Design and analysis of a wideband microwave absorber based on graphene-assisted metamaterial, Optik 250, 168310(2022).
[52] Li, JS; Li, XJ, Switchable tri-function terahertz metasurface based on polarization vanadium dioxide and photosensitive silicon, Opt. Express 30, 12823(2022).
[53] Li, JS; Chen, JZ; Simultaneous and independent regulation of circularly polarized terahertz wave based on metasurface, Opt. Express 30, 20298(2022).
[54] Li, JS; Guo, FL; Zhang, SP; Liu, C; Bidirectional Terahertz Vortex Beam Regulator, Materials 15, 8639(2022).
[55] Zhong, M; Li, JS; Switchable vortex beam polarization state terahertz multi-layer metasurface, Chn. Phys. B 31,114201(2022).
[56] Yang, YL; Li, JS; Yan, DX, Switchable multi-function device based on reconfiguration metasurface in terahertz region, Opt. Commun. 516, 128234(2022).
[57] Yang, LJ; Li, JS; Li, XJ, Transmission/reflection/absorption individually control multifunctional metasurfaces, Opt. Mater. Express 12, 1386(2022).
[58] Zhong, M; Li, JS; Tunable anisotropic metasurface by utilizing phase change material in terahertz range, Opt. Eng. 61, 087103(2022).
[59] Li, JS; Li, ZW; Dual-function terahertz metasurface based on vanadium dioxide and graphene, Chn. Phys. B 31, 094201(2022).
[60] Li, JS; Pan, WM; Combination regulation of terahertz OAM vortex beams on multi-bit metasurface, J. Phys. D 55, 235103(2022).
[61] Zhong, M; Li, JS; Multi-function terahertz wave manipulation utilizing Fourier convolution operation metasurface, Chn. Phys. B 31, 054207(2022).
[62] Zhong, M; Li, JS; Terahertz vortex beam and focusing manipulation utilizing a notched concave metasurface, Opt. Commun. 511, 127997(2022).
[63] Li, JS; Chen, Y; Terahertz device utilizing a transmissive geometric metasurface, Appl. Opt. 61, 4140(2022).
[64] Cheng, J; Li, WS; Li, JS; Multifunctional reflection type anisotropic metasurfaces in the terahertz band, Opt. Mater. Express 12, 2003(2022).
[65] Yang, LJ; Li, JS; Full-space terahertz regulation metasurface, Opt. Eng. 61, 047105(2022).
[66] Zhang, L; Li, JS; Transmission type dual-frequency vortex beams generator for multiple OAM modes, Opt. & Quant Electron 54, 209(2022).
[67] Cheng, J; Li, JS; Switchable terahertz broadband absorption and linear-to-circular polarization conversion, J. Mod. Opt. 69. 291(2022).