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2021年
(1) Yu, Q., Liu, S., Monorchio, A., Kong, X., Brizi, D., Zhang, X., & Wang, L. (2021). Miniaturized Wide-Angle Rasorber with a Wide Inter-absorption High Transparent Bandpass based on Multiple 2.5-D Resonators. IEEE Antennas and Wireless Propagation Letters.
(2) Kong, X., Lin, W., Wang, X., Xing, L., Jiang, S., Kong, L., & Liu, M. (2021). Liquid reconfigurable stealth window constructed by a metamaterial absorber. JOSA B, 38(11), 3277-3284.
(3) Sun, F., Xing, L., Xu, Q., Kong, X., Wang, H., & Zhang, G. (2021). An Attitude Independent Liquid Dielectric Resonant Antenna. IEEE Antennas and Wireless Propagation Letters.
(4) Kong, X., Kong, L., Jiang, S., Wang, X., Zou, Y., & Xing, L. (2021). Low-Profile and Dual-Polarization Water-Based Frequency Selective Rasorber With Ultrawideband Absorption. IEEE Antennas and Wireless Propagation Letters, 20(12), 2534-2538.
(5) Liao, K., Sun, S., Zheng, X., Shao, X., Kong, X., & Liu, S. (2021). A novel polarization converter based on the band-stop frequency selective surface. Chinese Physics B.
(6) Jiang, S., Kong, X., Kong, L., Jin, X., & Yuan, J. (2021). Switchable Polarization-Insensitive Frequency-Selective Surface Reflector/Absorber With Low Profile by Using Magnetic Material. IEEE Antennas and Wireless Propagation Letters, 20(10), 2078-2082.
(7) Liu, Z., Bornemann, J., Mamedes, D. F., Liu, S., Kong, X., & Zhao, X. (2021). A Wideband Fabry-Pérot Antenna With Enhanced Gain in the High-Frequency Operating Band by Adopting a Truncated Field Correcting Structure. IEEE Transactions on Antennas and Propagation, 69(12), 8221-8228.(行业顶刊)
(8) Yuan, J., Kong, X., Wang, X., Jiang, S., & Kong, L. (2021). Polarization‐independent reconfigurable frequency selective rasorber/absorber with low‐insertion loss. Microwave and Optical Technology Letters, 63(5), 1339-1345.
(9) Wang, X., Kong, X., Jiang, S., Kong, L., & Yuan, J. (2021). Wideband transverse electromagnetic cell design and its application in frequency selective surface measurement. International Journal of RF and Microwave Computer‐Aided Engineering, 31(7), e22690.
(10) 孔祥鲲,孔令奇,姜顺流,胡豪斌,张翔.电磁超材料在超宽带雷达隐身微小卫星设计中的应用.宇航学报,2021,42(06):775-782.
2020年
(1) Yuan, J., Kong, X., Chen, K., Shen, X., Wang, Q., & Wu, C. (2020). Intelligent Radome Design with Multilayer Composites to Realize Asymmetric Transmission of Electromagnetic Waves and Energy Isolation. IEEE Antennas and Wireless Propagation Letters.
(2) Xue, F., Liu, S., & Kong, X. (2020). Single‐layer high‐gain flat lens antenna based on the focusing gradient metasurface. International Journal of RF and Microwave Computer‐Aided Engineering, 30(6), e22183.
(3) Sajjad, M., Kong, X., Liu, S., Ahmed, A., Rahman, S. U., & Wang, Q. (2020). Graphene-based THz tunable ultra-wideband polarization converter. Physics Letters A, 126567.
(4 Yu, Q., Liu, S., Kong, X., Qin, J., Wen, Y., Wang, L., & Xu, Y. (2020). Bandwidth enhancement of a circularly polarized tapered crossed slot antenna with corner parasitic directors. International Journal of RF and Microwave Computer‐Aided Engineering, 30(5), e22173.
(5) Liu, Z., Liu, S., Zhao, X., Kong, X., Huang, Z., & Bian, B. (2020). Wideband Gain Enhancement and RCS Reduction of Fabry-Perot Antenna Using Hybrid Reflection Method. IEEE Transactions on Antennas and Propagation.(行业顶刊)
(6) Liu, Z., Liu, S., Bornemann, J., Zhao, X., Kong, X., Huang, Z., ... & Wang, D. (2020). A Low-RCS, High-GBP Fabry–Perot Antenna With Embedded Chessboard Polarization Conversion Metasurface. IEEE Access, 8, 80183-80194.
(7) Yan, X., Kong, X., Wang, Q., Xing, L., Xue, F., Xu, Y., ... & Liu, X. (2020). Water-based Reconfigurable Frequency Selective Rasorber with Thermally Tunable Absorption Band. IEEE Transactions on Antennas and Propagation. (行业顶刊)
(8) Yuan, S., Kong, X., Yu, Q., & Liu, S. (2020). Miniaturization of frequency‐selective rasorber based on 2.5‐D knitted structure. International Journal of RF and Microwave Computer‐Aided Engineering, 30(2), e22066.
(9) Kong, X., Jiang, S., Kong, L., Wang, Q., Hu, H., Zhang, X., & Zhao, X. (2020). Transparent metamaterial absorber with broadband radar cross-section (RCS) reduction for solar arrays. IET Microwaves, Antennas & Propagation, 14(13), 1580-1586.
(10) Yuan, J., Kong, X., Wang, X., Jiang, S., & Kong, L. (2020). Polarization‐independent reconfigurable frequency selective rasorber/absorber with low‐insertion loss. Microwave and Optical Technology Letters.
(11) Song, H., Zhang, Q., Liu, S., Kong, X., Zhao, X., & Huang, Z. (2020). A six-port path-reconfigurable circulator based on Y-type plasma photonic crystal. Photonics and Nanostructures-Fundamentals and Applications, 41, 100831.
(12) Kong, X., Wang, Q., Jiang, S., Kong, L., Yuan, J., Yan, X., ... & Zhao, X. (2020). A metasurface composed of 3-bit coding linear polarization conversion elements and its application to RCS reduction of patch antenna. Scientific Reports, 10(1), 1-10.
(13) Wu, C., Liu, S., Yu, Q., Kong, X., Yuan, J., & Liao, K. (2020). A low profile miniaturized widely‐spaced triband bandpass FSS using coupled resonance. International Journal of RF and Microwave Computer‐Aided Engineering, 30(11), e22389.
2019年
(1) Wang, L., Liu, S., Kong, X., Zhang, H., Yu, Q., & Wen, Y. (2019). Frequency-Selective Rasorber With a Wide High-Transmission Passband Based on Multiple Coplanar Parallel Resonances. IEEE Antennas and Wireless Propagation Letters, 19(2), 337-340.
(2) Li, R., Kong, X. K., Liu, S. B., Liu, Z. M., & Li, Y. M. (2019). Planar metamaterial analogue of electromagnetically induced transparency for a miniature refractive index sensor. Physics Letters A, 383(32), 125947.
(3) Wang, L., Liu, S., Kong, X., Wen, Y., & Liu, X. (2019). Broadband vortex beam generating for multi-polarisations based on a single-layer quasi-spiral metasurface. Electronics Letters, 55(22), 1168-1170.
(4) Yu, Q., Liu, S., Monorchio, A., Kong, X., Wen, Y., & Huang, Z. (2019). A miniaturized high-selectivity frequency selective rasorber based on subwavelength resonance and interdigital resonator. IEEE Antennas and Wireless Propagation Letters, 18(9), 1833-1837.
(5) Wang, Q., Kong, X., Yan, X., Xu, Y., Liu, S., Mo, J., & Liu, X. (2019). Flexible broadband polarization converter based on metasurface at microwave band. Chinese Physics B, 28(7), 074205.
(6) Yu, Q., Liu, S., Kong, X., & Bian, B. (2019). A broadband miniaturized ultra‐thin tri‐band bandpass FSS with triangular layout. International Journal of RF and Microwave Computer‐Aided Engineering, 29(7), e21738.
(7) Liu, Z., Liu, S., Kong, X., Huang, Z., Zhao, X., & Liu, J. (2019). Gain enhancement of circularly polarized antenna with dual‐polarization conversion transmitarray. International Journal of RF and Microwave Computer‐Aided Engineering, 29(6), e21669.
(8) 严祥熙,孔祥鲲,卞博锐,刘晓春,刘少斌.(2019).覆盖L波段的宽带隐身雷达天线罩设计. 微波学报(02),48-53. doi:10.14183/j.cnki.1005-6122.201902011.
2018年
(1) Liu, Z., Liu, S., Bian, B., Kong, X., & Zhang, H. (2019). Metasurface‐based low‐profile high‐gain substrate‐integrated Fabry‐Pérot cavity antenna. International Journal of RF and Microwave Computer‐Aided Engineering, 29(4), e21583.
2017年
(1) Xue, F., Liu, S. B., Zhang, H. F., Wen, Y. D., Kong, X. K., & Li, H. M. (2017). A novel reconfigurable electromagnetically induced transparency based on S-PINs. International Journal of Modern Physics B, 1850030.
(2) Hu, Y., Liu, S., Kong, X., & Mao, C. (2017). Low windage resistance frequency-selective rasorber based on windmill-shape coupling line arrays. Electronics Letters, 53(22), 1450-1452.
(3) Wang, L. L., Liu, S. B., Zhang, H. F., Kong, X. K., & Liu, L. L.High-impedance surface-based flexible broadband absorber. Journal of Electromagnetic Waves and Applications, (2017): 31(13), 1216-1231.
(4) Kong, Xiang-kun, et al. "Tunable multichannel absorber composed of graphene and doped periodic structures." Optics Communications 383 (2017): 391-396.
(5) Kong, Xiangkun, et al. "Broadband and conformal metamaterial absorber." Frontiers of Optoelectronics (2017): 1-8.
[1] 孔祥鲲,王奇,王奇等.Flexible broadband polarization converter based on metasurface at microwave band.CHINESE PHYSICS B,2019
[2] 孔祥鲲,,等.A Wideband Polarization Reconfigurable Antenna Using Quasi-Cross-Shaped Coupling Slot.IEEE Int. Conf. Comput. Electromagn., ICCEM,2018
[3] 孔祥鲲,Yan, Xiangxi,孔祥鲲,孔祥鲲等.Thermally Tunable Water-based Frequency Selective Rasorber with Transparent Window.IEEE Int. Conf. Comput. Electromagn., ICCEM - Proc.,2019
[4] 孔祥鲲,,等.Single Layer Multi-Polarization Transmitarray in C-Band with Beam-Steering Capability.IEEE Int. Conf. Comput. Electromagn., ICCEM,2018
[5] 孔祥鲲,,等.覆盖L波段的宽带隐身雷达天线罩设计.微波学报,2019
[6] 孔祥鲲,Tang, Dan,孔祥鲲等.Design of a Low Profile Omnidirectional Circular Polarized Reconfigurable Antenna for Beidou Application.IEEE Int. Conf. Comput. Electromagn., ICCEM,2018
[7] 孔祥鲲,,等.A Single Layer Broadband Reflectarray for Dual Polarizing Beam Splitting.IEEE Int. Conf. Comput. Electromagn., ICCEM,2018
[8] 孔祥鲲,孔祥鲲,孔祥鲲等.Tunable multichannel absorber composed of graphene and doped periodic structures.OPTICS COMMUNICATIONS,2017
[9] 孔祥鲲,孔祥鲲,孔祥鲲等.Broadband and conformal metamaterial absorber.Front. Optoelectron.,2017
[10] 孔祥鲲.Tunable multichannel absorber composed of graphene and doped periodic structures.Optics Communications,2017
[11] 孔祥鲲.Broadband and conformal metamaterial absorber.Frontiers of Optoelectronics,2017
[12] 孔祥鲲,,等.单层纯金属多极化平面透射阵列分束天线设计.2017年全国天线年会论文集(上册),2017
[13] 孔祥鲲,,等.CST电磁仿真技术在天线实验教学中的应用.实验技术与管理,2017