中国计量大学太赫兹技术与应用研究所

2024年发表论文

[01] Yixin Liu, Ying Tian, Chenxia Li, Bo Fang, Jianjun Liu, Zhi Hong, Xufeng Jing, "All-dielectric double-layer honeycomb tunable metamaterial absorber with integrated gold nanoparticles," Photonics Res. 12, 2344 (2024).
[02] Ke, L., Yang, Y., Zhu, M., Zhou, H., Chen, Y., Tian, Y., Li, C., Fang, B., Hong, Z., Jing, X., Tight focusing of fractional-order topological charge vector beams by cascading metamaterials and metalens. Microsyst. Nanoeng. 10, 146 (2024).
[03] Yi Chen, Simeng Zhang, Ying Tian, Chenxia Li, Wenlong Huang, Yixin Liu, Yongxing Jin, Bo Fang, Zhi Hong, and Xufeng Jing, Focus control of wide-angle metalens based on digitally encoded metasurface, Opto-Electron Adv 7, 240095(2024).
[04] Zeng, Bowen; Li, Chenxia; Fang, Bo; Hong, Zhi; Jing, Xufeng, Flexible tuning of multifocal holographic imaging based on electronically controlled metasurfaces, Photonics Research 12, 61(2024).
[05] Yixin Liu; Chenxia Li; Ying Tang; Xiangrui Meng; Xiyong Zou; Bo Fang; Zhi Hong; Xufeng Jing. Terahertz Wave all-Dielectric Broadband Tunable Metamaterial Absorber, Journal of Lightwave Technology 42, 7686(2024).
[06] Yang, Yunyun; Jiang, Jie; Li, Chenxia; Chen, Yi; Tang, Ying; Shi, Fan; Fang, Bo; Hong, Zhi; Jing, XF, Flexible Control of Encoded Metasurface Holographic Imaging Based on Fourier Convolution Principle, Journal of Lightwave Technology 42, 7516 (2024).
[07] Chen, Y; Huang, X; Yao, GP; Li, CX; Fang, B; Tang, Y; Lu, JX; Hong, Z; Jing, XF, Microfluidic Sensor Based on Substrate-Free Non-Uniform Metagrating, Journal of Lightwave Technology 42, 7498 (2024).
[08] Cheng, XY; Jin, YX; Tang, Y; Li, CX; Fang, B; Hong, Z; Jing, XF, Image wireless transmission based on microwave digital coding metasurfaces, JOSA B41, D31(2024).
[09] He, XH; Li, YL; Tang, Y; Fang, B; Hong, Z; Jing, XF, Review for wireless communication system based on space-time-coding digital metasurfaces, Appl. Phys. B 130, 187(2024).
[10] Liu, XJ; Li, YL; Yao, GP; Li, CX; Fang, B; Tang, Y; Hong, Z; Jing, XF, Perfect vortex beams generation based on reflective geometric phase metasurfaces, Chin. J. Phys. 91, 828(2024).
[11] Xu, JF; Xu, P; Yang, ZY; Liu, FH; Xu, LZ; Lou, J; Fang, B; Jing, XF, Freeform metasurface design with a conditional generative adversarial network, Appl. Phys. A 130, 530(2024).
[12] Wu, Y; Tao, WW; Zhao, FF; Li, CX; Fang, B; Zhang, P; Hong, Z; Jing, XF; Yu, MZ, Review for metamaterials and metasurfaces based on vanadium dioxide phase change materials, Opt. Laser Technol. 179, 111376(2024).
[13] Qiao, J; Feng, GJ; Yao, GP; Li, CX; Tang, Y; Fang, B; Zhao, TQ; Hong, Z; Jing, XF, Research progress on the principle and application of multi-dimensional information encryption based on metasurface, Opt. Laser Technol. 179, 111263(2024).
[14] Xin, HX; Feng, GJ; Wang, QY; Zheng, ZD; Tang, Y; Ren, KP; Mao, ZL; Li, CX; Jin, YX; Fang, B; Hong, Z; Jing, XF, Multi-channel vortex beam based on single layer transmission-type metal metasurface, Opt. Laser Technol. 179, 111094(2024).
[15] Zhu, JZ; Li, CX; Fang, B; Lu, JX; Hong, Z; Jing, XF, Advancements in biosensing detection based on terahertz metasurfaces, Opt. Laser Technol. 179, 110978(2024).
[16] Yang, ZX; Wang, XP; Jin, YX; Li, CX; Fang, B; Hong, Z; Jing, XF, Calculation and experiment of carpet illusionary cloaking modeling based on coding metasurface, Sensors & Actuators A373, 115395(2024).
[17] Yang, YY; Xin, HX; Liu, YX; Cheng, HL; Jin, YX; Li, CX; Lu, JX; Fang, B; Hong, Z; Jing, XF, Intelligent metasurfaces: Integration of artificial intelligence technology and metasurfaces, Chin J. Phy. 89, 991(2024).
[18] Li, CX; Zheng, ZD; Ke, L; Fang, B; Hong, Z; Yu, MZ; Jing, XF, Terahertz vector beams generated by rectangular multilayer transmission metasurface, Opt Laser Tech 169, 110143(2024).
[19] Qi, JS; Li, CX; Xia, Y; Fang, B; Hong, Z; Chen, L; Jing, XF, Research progress of biomolecular detection based on metasurfaces, IR Phys. Tech. 136, 105111(2023).
[20] Xu, P; Lou, J; Li, CX; Jing, XF, Inverse design of a metasurface based on a deep tandem neural network, JOSA B 41, 497661(2024).
[21] Cheng, XY; Li, CX; Fang, B; Hong, Z; Jin, YX; Jing, XF, Metasurface-based wireless communication technology and its applications, J. Appl. Phys. 135, 120702(2024).
[22] Cui, FY; Huang, X; Zhou, QY; Tong, YJ; Liu, FH; Tang, Y; Meng, XR; Li, CX; Fang, B; Jing, XF, Magnetic toroidal dipole resonance terahertz wave biosensor based on all-silicon metasurface, Opt. Laser Eng. 177, 108128(2024).
[23] Huang, WL; Li, CX; Fang, B; Xu, JF; Liu, FH; Xu, LZ; Tang, Y; Hong, Z; Jing, XF, Research progress of terahertz wave dynamic control of digital coded metasurfaces, Opt. Laser Eng. 174, 107977(2024).
[24] Jiang, XY; Zhang, YJ; Fang, B; Zhang, DQ; Pan, GM; Jin, ZW; Hong, Z; Shu, FZ, Tunable high-Q resonances based on the asymmetric nanohole array of phase-change material, J. Phys. D 57, 375101(2024).
[25] Tao, Y; Zhang, DQ; Jin, ZW; Pan, GM; Qin, JY; Hong, Z; Fang, B; Shu, FZ, Tunable third harmonic generation based on high-Q polarization-controlled hybrid phase-change metasurface Nanophotonics 13, 3373(2024).
[26] Lv, WZ; Wang, C; Zhang, DQ; Jin, ZW; Pan, GM; Fang, B; Hong, Z; Shu, FZ, Switchable multiple quasibound states in the continuum based on the phase transition of vanadium dioxide, JOSA B41, 432(2024).
[27] Chen, Mingming; Yang, Xue-Xia; Shu, Fangzhou, Dual-band tunable electromagnetically induced transparency in vanadium dioxide-based miniaturized terahertz metasurfaces, Mater. Res. Bull. 180, 113000(2024).
[28] Fang, Sijun; Yang, Zhuchuang; Tao, Yi; Lv, Wangze; Jiang, Jieying; Zhang, Dong-Qin; Wang, Ben-Xin; Yang, Guofeng; Shu, Fang-Zhou, Design and experimental realization of triple-band filtering metamaterial in sub-terahertz band enabled by conductivity coupling response of two identical split rings, Opt. Laser Technol. 183, 112345(2024).
[29] Jin, ZH; Ren, QY; Chen, T; Dai, ZG; Shu, FZ; Fang, B; Hong, Z; Shen, CY; Mei, SH, Vision transformer empowered physics-driven deep learning for omnidirectional three-dimensional holography, Opt. Express 32, 14394(2024).
[30] Jing, YQ; Zhang, JL; Wan, M; Xue, JD; Liu, JJ; Qin, JY; Hong, Z; Du, Y, Distinguishing Polymorphs of Ethenzamide-Saccharin Cocrystal Based on Terahertz and Raman Vibrational Spectroscopic Techniques, IEEE Trans. THz Sci. Tech. 14, 152(2024).
[31] Ma, Zhenyang; Cai, Wanjun; Xiao, Lihua; Xiao, Binggang; Qin, Jianyuan, Design and simulation of tunable metal-graphene hybrid metamaterial terahertz modulator based on electromagnetically induced transparency, Opt. Quant Elec. 56, 1058(2024).
[32] Qi, TW; Song, FH; Xiao, BG; Du, Y; Qin, JY, Excitation and sensing application of dual-bound states in the continuum in metallic terahertz metasurfaces, Opt. Laser Eng. 180, 108287(2024).
[33] Xu, XJ; Yuan, TT; Wu, JW; Liu, JJ; Du, Y, Detection of Trace Dibutyl Phthalate Based on Multiresonant Terahertz Metamaterial Sensor, IEEE SENSORS J. 24, 1415(2024).
[34] Liu, Xiaoxuan; Xiao, Binggang; Qin, Jianyuan, Terahertz Sensing Based on Floating Bilayer Metasurface with Toroidal Dipole Resonance Toward Ultra-High Sensitivity, Adv. Opt. Mater. DOI10.1002/adom.202400785(2024).
[35] Liu, XX; Liu, G; Qin, JY, Feasibility of Using Terahertz Toroidal Metasurface Sensor for Detection and Quantification of Chlorothalonil in Water, IEEE SENSORS J 23, 30360(2024).
[36] Zhang, X; Wu, X; Xiao, BG; Qin, JY, Terahertz determination of imidacloprid in soil based on a metasurface sensor, Opt. Express 31, 37778(2024).
[37] Xu, LL; Yan, DX; Li, XJ; Zhang, L; Sun, S; Li, JN, Design and error analysis of simple terahertz high birefringence microstructured fiber, PHYSICA SCRIPTA 99, 115549(2024).
[38] Chen, XM; Yan, DX; Qiu, JZ; Zhu, ZH; Li, XJ; Zhang, L; Sun, S; Li, JN, Design and investigation of a terahertz hollow-core fiber with double-layer ring core for OAM mode transmission, PHYSICA SCRIPTA 99, 105511(2024).
[39] Li, ML; Li, XJ; Yan, DX; Zhang, L. Terahertz Liquid Sensing With Spoof Surface Plasmons Based on High-Contrast Gratings, IEEE SENSORS J 24, 20523(2024).
[40] Zhu, ZH; Yan, DX; Xu, LL; Li, XJ; Zhang, L; Li, JN; Sun, S, Terahertz Ring-Core Fiber for First-Order Radial OAM Modes Transmission Without Phase Distortion, IEEE J. Select Quant. Electron. 30, 4300610(2024).
[41] Xu, MJ; Yan, DX; Li, XJ; Zhang, L; Li, JN, Enhanced terahertz dual-band third-harmonic generation in graphene-assisted metamaterial, Opt. Laser Eng. 181, 108407(2024).
[42] Yan, DX; Yuan, ZW; Qiu, JZ; Li, XJ, Influence of cladding tube structure on transmission characteristics of negative curvature terahertz fiber, Laser Phys. 34, 065102(2024).
[43] Xu, LL; Yan, DX; Li, XJ; Zhang, L; Li, JN, A metasurface structure-assisted terahertz negative curvature fiber, PHYSICA SCRIPTA 99, 045525(2024).
[44] Zhu, JX; Li, XJ; Yan, DX; Zhang, L, Parameter Multiplexing-Based Terahertz Enhanced Absorption Spectra Using Ultrathin Metal Groove Array, PLASMONICS, DOI10.1007/s11468-024-02250-3
[45] Weng, XH; Yan, DX; Qiu, Y; Li, XJ; Zhang, L; Li, JN, Realization of multifunctional transformation based on the vanadium dioxide-assisted metamaterial structure, Phys. Chem. Chem Phys 26, 8247(2024).
[46] Yan, DX; Qiu, Y; Zhao, CC; Li, XJ; Zhang, L; Li, JN, Enhanced terahertz third-harmonic generation based on the graphene-assisted meta-grating structure, Diamond Related Mater. 142, 110818(2024).
[47] Zhao, KJ; Chen, H; Li, XJ; Sun, J; Li, B; Yan, DX; Li, LL, Time Domain Simulated Characterization of the Coplanar Waveguide in an On-Chip System for Millimeter Waveform Metrology, ELECTRONICS 13, 145(2024).
[48] Li, XJ; Wu, H; Yan, DX; Zhang, L; Zhao, Y, Enhancement of the terahertz absorption spectroscopy based on the stretchable dielectric metasurface, Appl. Phys. A 130, 50(2024).
[49] Li, XJ; Nie, L; Wu, H; Zhang, L; Yan, DX, Enhancing THz fingerprint detection by the stretchable substrate with a dielectric metagrating, Appl. Opt. 62, 9028(2024).
[50] Jiang, MY; Li, JS; Guo, FL, Multifunctional Terahertz Metasurface Controlled by Left/Right Circularly Polarized Waves, SPECTROSCOPY AND SPECTRAL ANALYSIS 44, 3371(2024).
[51] Li, JS; Wang, D; Xiong, RH, Reconfigurable metasurface for circular dichroism and a polarization converter, Opt. Mater. Exp. 14, 2612(2024).
[52] Li, JS; Xue, YY; Guo, FL, Highly sensitive terahertz polarization biosensor utilizing chiral metasurface, J. Phys. D 57, 405106(2024).
[53] Li, JS; Liu, YL; Ren, JH; Xiong, RH, Terahertz wave regulation based on both geometry and propagation phase metasurface, Opt. Commun. 570, 030929(2024).
[54] Wang, D; Li, JS; Guo, FL, Switchable ultra-broadband absorption and polarization conversion terahertz metasurface, Acta Phys. Sinica 73, 148701(2024).
[55] Huang, RT; Li, JS, Terahertz Multi-Dimensional Phase Regulated Reflection Coding Metasurface, SPECTROSCOPY AND SPECTRAL ANALYSIS 44, 1858(2024).
[56] Li, JS; Jiang, MY; Xiong, RH, Bidirectional vortex beam and reflective polarization conversion terahertz metasurfaces, Appl. Opt. 63, 4637(2024).
[57] Li, JS; Jiang, MY; Zhang, LN, Directional controllable terahertz orbital angular momentum generator, Appl. Phys. B 130, 83(2024).
[58] Jiang, MY; Li, JS; Xiong, RH, Tunable multifunctional terahertz metasurface based on an indium antimonide medium, Appl. Opt. 63, 3636(2024).
[59] Li, JS; Huang, RT; Xiong, RH, Independently regulating linearly and circularly polarized terahertz wave metasurface, Opt. Mater. Exp. 14, 897(2024).
[60] Li, JS; Xiong, RH; Guo, FL; Cheng, J, Cross-Polarization and Co-Polarization Waves Regulation Metasurface, IEEE Photon. Tech. Lett. 36, 361(2024).
[61] Wu, RL; Li, JS, Circular/linear dichroism and anisotropy based on tunable terahertz metasurfaces J. Comput. Electron. 23, 348(2024).
[62] Li, JS; Xiong, RH; Guo, FL, Flexible manipulation terahertz beam based on anall-dielectric metasurface by utilizing addition and convolution algorithms,Appl. Opt. 63, 1634(2024).
[63] Zhang, SP; Li, JS; Guo, FL, Functionally switchable terahertz metasurface under linearly polarized and circularly polarized waves incidence, Opt. Mater Exp. 14, 240(2024).
[64] Li, JS; Xue, YY; Guo, FL, Triple frequency bands terahertz metasurface sensor based on EIT and BIC effects, Opt. Commun. 554, 130225(2024).
[64] Li, JS; Chen, Y, Multi-channel terahertz focused beam generator based on shared-aperture metasurface, Chin. Phys. B 32, 124204(2024).