中国计量大学太赫兹技术与应用研究所

2019年发表论文

[01] Hu Jie; Lang Tingting; Xu Weihang; Liu Jianjun, and Hong Zhi, Experimental Demonstration of Electromagnetically Induced Transparency in a Conductively Coupled Flexible Metamaterial with Cheap Aluminum Foil, Nanoscale Res. Lett. 14, 359(2019)
[02] Fengyan He, Bingxin Han, Xiangjun Li, Tingting Lang, Xufeng Jing, and Zhi Hong, Analogue of electromagnetically induced transparency with high-Q factor in metal-dielectric metamaterials based on bright-bright mode coupling, Optics Express 27(26): 37590-37600(2019).
[03] Dong Yang, Karol Horodecki, and Andreas Winter, Distributed Private Randomness Distillation, Phys. Rev. Lett. 123, 170501(2019).
[04] Cheng Wei; Han Zhanghua; Du Yong; Qin Jianyuan, Highly sensitive terahertz fingerprint sensing with high-Q guided resonance in photonic crystal cavity, Opt. Express 27(11), 16071-16079(2019)
[05] Jinyan Diao, Bingxin Han, Jie Yin, Xiangjun Li, Tingting Lang, and Zhi Hong*, Analogue of Electromagnetically Induced Transparency in an S-shaped All-dielectric Metasurface, IEEE Photonics J. 11(3), 4601110(2019).
[06] Shen, Fei; Qin, Jianyuan; Han, Zhanghua, Planar antenna array as a highly sensitive terahertz sensor, Appl. Opt. 58: 540-544(2019).
[07] Qin, Jianyuan; Zhu, Bei; Du, Yong; Terahertz detection of toxic gas using a photonic crystal fiber, Opt Fiber Technol 52: 101990(2019).
[08] Wang, Yulin; Cheng, Wei; Qin, Jianyuan; Terahertz refractive index sensor based on the guided resonance in a photonic crystal slab, Opt. Commun. 434: 163-166(2019).
[09] Wang, Yaguo; Xue, Jiadan; Qin, Jianyuan; Structure and spectroscopic characterization of pharmaceutical co-crystal formation between acetazolamide and 4-hydroxybenzoic acid, SPECTROCHIMICA ACTA PART A 219: 419-426(2019).
[10] Zhang, Ziming; Cai, Qiang; Xue, Jiadan; Du Yong, Co-Crystal Formation of Antibiotic Nitrofurantoin Drug and Melamine Co-Former Based on a Vibrational Spectroscopic Study, PHARMACEUTICS 11, 56(2019)
[11] Wang, Yaguo; Xue, Jiadan; Wang, Qiqi; Hong, Zhi; Du, Yong; Structural investigation of a 2:1 co-crystal between diflunisal and isonicotinamide based on terahertz and Raman spectroscopy, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy 216: 98-104(2019)
[12] Wang, Qiqi; Xue, Jiadan; Jin, Shunji; Zhang, Ziming; Hong, Zhi; Du, Yong; Pharmaceutical Cocrystal Formation of Pyrazinamide with 3-Hydroxybenzoic Acid: A Terahertz and Raman Vibrational Spectroscopies Study, Molecules 24: 488(2019)
[13] Lang, Tingting; Shen, Tingting; Hu, Jie; Hong, Zhi; Spectrometer based on parallel-plate waveguides utilizing abnormal transmission, Appl. Opt. 58: 1413-1418(2019).
[14] Han, Baojuan; Han, Zhanghua; Qin, Jianyuan; A sensitive and selective terahertz sensor for the fingerprint detection of lactose, TALANTA 192: 1-5 (2019).
[15] Liu Zihao, Li Xingjun, Yin Jie, and Hong Zhi, Asymmetric all Silicon Micro-Antenna Array for High Angle Beam Bending in Terahertz Band, IEEE Photonics J. 11(2), 5900509(2019)
[16] Li Meng, Han Shuang; Gan Haiyong; Li Chenxia; Liu Jianjun; Hong Zhi; Jing Xufeng, Improvement of Wide-Angle Response for Terahertz Carpet Cloaking by Using a Metasurface with Multilayer Microstructure J. Infra. Mill. THz Waves 40(9), 917-928(2019)
[17] Xufeng Jing, Chengfei Chu, Chenxia Li, Haiyong Gan, Yingwei He, Xincui Gui, and Zhi Hong, Enhancement of bandwidth and angle response of metasurface cloaking through adding antireflective moth-eye-like microstructure, Optics Express 27(15):21766(2019)
[18] Jing, Xufeng; Xu, Yinuo; Gan, Haiyong, He, Yingwei; Hong, Zhi, High Refractive Index Metamaterials by Using Higher Order Modes Resonances of Hollow Cylindrical Nanostructure in Visible Region, IEEE ACCESS 7: 144945-144956‏(2019)
[19] Bo Fang, Chenxia Li, Yandong Peng, Xufeng Jing, Broadband terahertz reflector through electric and magnetic resonances by all dielectric cylinder microstructure, Microwave and Optical Technology Letters 61(6), 1634-1639(2019)
[20] Fang Bo, Bie Xun, Yan Zhigang, Gan Haiyong, Li Chenxia, Hong Zhi, Jing Xufeng, Manipulation of main lobe number and azimuth angle of terahertz-transmitted beams by matrix-form-coding metasurface, Appl. Phys A 125(9), 651(2019)
[21] Fang, B; Li, BY; Peng, YD; Li, CX; Hong, Z; Jing, XF, Polarization-independent multiband metamaterials absorber by fundamental cavity mode of multilayer microstructure, Microwave & Opt. Technol Lett. 61(10), 2385-2391(2019)
[22] Bo Fang, Chenxia Li, Xufeng Jing*, Enhancement of unidirectional scattering through magnetic and electric resonances by nanodisks’ chain, Optical Review, 26(1), 131-142(2019)
[23] Fang, Bo; Wang, Xiaoyue; Huang, Biqun; Jing, Xufeng*, Splitting resonance phenomenon of electromagnetic coupling effect for barium strontium titanate dielectric micro-spheres, Optik 179,787-795(2019).
[24] Bo Fang, Zhiyu Cai, Yandong Peng, Chenxia Li, Zhi Hong, Xufeng Jing*, Realization of ultrahigh refractive index in terahertz region by multiple layers coupled metal ring metamaterials, Journal of Electromagnetic Waves and Applications, 33(11), 1375-1390(2019)
[25] Fang, Bo; Wang, Weimin; Jing, Xufeng*, Zou, Qian; Li, Chenxia*; Zou, Xiyong; Hong, Zhi, Broadband coupling scattering of all-dielectric conical multimer nanostructures, J. Optoelectro Adv. Mater. 21, 222-229(2019).
[26] Li, Jiu-sheng; Yan, De-Xian; Sun, Jian-zhong, Flexible dual-band all graphene dielectric terahertz absorber, Opt. Mater. Express 9: 2067-2075(2019).
[27] Wu, Shuang; Li, Jiu-Sheng, Hollow-petal graphene metasurface for broadband tunable THz absorption, Appl. Opt 58: 3023-3028(2019).
[28] Yan, Dexian; Li, Jiusheng, Tuning control of dual-band terahertz perfect absorber based on graphene single layer, LASER Phys. 29: 046203(2019).
[29] Yan, Dexian; Li, Jiusheng, Design and analysis of the influence of cladding tubes on novel THz waveguide, OPTIK 180: 824-831(2019).
[30] Yan De-Xian; Li Jiu-Sheng; Wang Yi, High sensitivity terahertz refractive index sensor based on sunflower-shaped circular photonic crystal, Acta Phys. Sinica 68: 207801(2019).
[31] Yan, Dexian; Li, Jiusheng, Tunable all-graphene-dielectric single-band terahertz wave absorber, J. Phys. D 52: 275102(2019).
[32] Yan, Dexian; Li, Jiusheng, Tuning control of broadband terahertz absorption using designed graphene multilayers, J. Opt. 21: 075101(2019).
[33] Yan, Dexian; Li, Jiusheng, Design for realizing an all-optical terahertz wave half adder based on photonic crystals, Laser Phys. 29 :076203(2019).
[34] Yan, Dexian; Li, Jiusheng; Jin, Lufan, Light-controlled tunable terahertz filters based on photoresponsive liquid crystals, Laser Phys. 29, 025401(2019)
[35] Yan, Dexian; Li, Jiusheng, Effect of tube wall thickness on the confinement loss, power fraction and bandwidth of terahertz negative curvature fibers, Optik 178, 717-722(2019)
[36] Yan, Dexian; Li, Jiusheng, Tuning control of dual-band terahertz perfect absorber based on graphene single layer, Laser Phys. 29, 046203 (2019).
[37] Wang Kai-hong; Li Jiu-sheng, Muti-band terahertz modulator based on double metamaterial/perovskite hybrid structure, Opt. Commun. 447: 1-5(2019)
[38] Li, Jiu-sheng; Sun, Jian-zhong, Umbrella-shaped graphene/Si for multi-band tunable terahertz absorber, Appl. Phys. B 125: 183(2019).
[39] Li, Shao-He; Li, Jiu-Sheng, Frequency coding metasurface for multiple directions manipulation of terahertz energy radiation, AIP Adv. 9: 035146(2019).
[40] Li, Shao-He; Li, Jiu-Sheng, Pancharatnam-Berry metasurface for terahertz wave radar cross section reduction, Chin. Phys. B 28: 094210(2019).
[41] Li, Shaohe; Li, Jiusheng, Manipulating terahertz wave and reducing radar cross section (RCS) by combining a Pancharatnam-Berry phase with a coding metasurface, LASER Phys. 29 :075403(2019).
[42] Xiong, Ri-Hui; Li, Jiu-Sheng; Yao, Jian-Quan, Spatial-frequency coding metasurfaces to regulate energy radiation of terahertz waves, J. COMPUTATIONAL ELECTRONICS 18: 712-721(2019).
[43] Li Shao-He; Li Jiu-Sheng; Sun Jian-Zhong, Terahertz frequency coding metasurface, Acta Phys. Sinica 68: 104203(2019).
[44] Li Shao-He; Li Jiu-Sheng; Sun Jian-Zhong, Terahertz wave front manipulation based on Pancharatnam-Berry coding metasurface, Opt. Mater Express 9, 1118-1127(2019)
[45] Zhai, Zhaocheng; Zhang, Le; Li, Xiangjun, Sanshui Xiao, Tunable terahertz broadband absorber based on a composite structure of graphene multilayer and silicon strip array, Opt. Commun. 431, 199-202(2019).