Multifunctional ultra-thin metasurface with low infrared emissivity, microwave absorption and high optical transmission
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Jiafu Wang | S. Qu | Q. Fan | Cuilian Xu | Xiaoxia Tian | Zhiqiang Gao | Honghong Zhang
[1] Jiafu Wang,et al. Phase-to-pattern inverse design paradigm for fast realization of functional metasurfaces via transfer learning , 2021, Nature Communications.
[2] M. Qiu,et al. Multispectral camouflage for infrared, visible, lasers and microwave with radiative cooling , 2020, Nature Communications.
[3] Yuxiang Jia,et al. Integrated design of single-layer multispectral metasurface with broadband microwave polarization rotation and low infrared emissivity , 2020 .
[4] Jiafu Wang,et al. Multiple working mechanism metasurface with high optical transparency, low infrared emissivity and microwave reflective reduction , 2020 .
[5] M. Pu,et al. Hierarchical metamaterials for laser-infrared-microwave compatible camouflage. , 2020, Optics express.
[6] Jiafu Wang,et al. An optically transparent sandwich structure for radar-infrared bi-stealth , 2020 .
[7] Jiafu Wang,et al. An optical-transparent metamaterial for high-efficiency microwave absorption and low infrared emission , 2020, Journal of Physics D: Applied Physics.
[8] W. Lu,et al. Selectively thermal radiation control in long-wavelength infrared with broadband all-dielectric absorber. , 2019, Optics express.
[9] Xiangang Luo,et al. Flexible and Transparent Microwave–Infrared Bistealth Structure , 2019, Advanced Materials Technologies.
[10] Lixin Song,et al. Targeted design, analysis and experimental characterization of flexible microwave absorber for window application , 2019, Materials & Design.
[11] Xiangang Luo,et al. Engineering Optics 2.0: A Revolution in Optical Materials, Devices, and Systems , 2018, ACS Photonics.
[12] Yongfeng Li,et al. Merging bands of polarization convertors by suppressing Fano resonance , 2018, Applied Physics Letters.
[13] Yun Jing,et al. Transparent coupled membrane metamaterials with simultaneous microwave absorption and sound reduction. , 2018, Optics express.
[14] Yu Wang,et al. Indium Tin Oxide Broadband Metasurface Absorber , 2018, ACS Photonics.
[15] Li Ting Wu,et al. A Metamaterial Route to Realize Acoustic Insulation and Anisotropic Electromagnetic Manipulation Simultaneously , 2018, Advanced Materials Technologies.
[16] T. Cui,et al. Optically transparent coding metasurfaces based on indium tin oxide films , 2018, Journal of Applied Physics.
[17] Hua Ma,et al. Merging absorption bands of plasmonic structures via dispersion engineering , 2018, Applied Physics Letters.
[18] Taijun Liu,et al. Transparent transmission-selective radar-infrared bi-stealth structure. , 2018, Optics express.
[19] Hua Ma,et al. Transparent broadband metamaterial absorber enhanced by water-substrate incorporation. , 2018, Optics express.
[20] Wen Wu,et al. Optical-transparent flexible broadband absorbers based on the ITO-PET-ITO structure , 2018 .
[21] Yongfeng Li,et al. Hybrid metasurfaces for microwave reflection and infrared emission reduction. , 2018, Optics express.
[22] Jiafu Wang,et al. Water-based metamaterial absorbers for optical transparency and broadband microwave absorption , 2018 .
[23] Qiang Cheng,et al. An optically transparent metasurface for broadband microwave antireflection , 2018 .
[24] Tao Zhang,et al. Theoretical Analysis and Design of Ultrathin Broadband Optically Transparent Microwave Metamaterial Absorbers , 2018, Materials.
[25] Yan Zhang,et al. Design, fabrication and characterization of a thin infrared-visible bi-stealth film based on one-dimensional photonic crystal , 2018, Optical Materials Express.
[26] Qiang Cheng,et al. An ultralight and thin metasurface for radar-infrared bi-stealth applications , 2017 .
[27] Jae W. Hahn,et al. Selective dual-band metamaterial perfect absorber for infrared stealth technology , 2017, Scientific Reports.
[28] Jianguo Guan,et al. Optically Transparent Broadband Microwave Absorption Metamaterial By Standing‐Up Closed‐Ring Resonators , 2017 .
[29] T. Cui,et al. Broadband metamaterial for optical transparency and microwave absorption , 2017 .
[30] Ke Chen,et al. Coding metasurface for broadband microwave scattering reduction with optical transparency. , 2017, Optics express.
[31] Taijun Liu,et al. A radar-infrared bi-stealth structure based on metasurfaces , 2017 .
[32] James Grant,et al. Multi-spectral materials: hybridisation of optical plasmonic filters, a mid infrared metamaterial absorber and a terahertz metamaterial absorber. , 2016, Optics express.
[33] Young Jae Shin,et al. Transparent and Flexible Polarization-Independent Microwave Broadband Absorber , 2014 .
[34] Haifeng Cheng,et al. A thin radar-infrared stealth-compatible structure: Design, fabrication, and characterization , 2014 .
[35] Franz Faupel,et al. Design of a Perfect Black Absorber at Visible Frequencies Using Plasmonic Metamaterials , 2011, Advanced materials.
[36] Haifeng Cheng,et al. Infrared Emissivity of Capacitive Frequency-Selective Surfaces and its Application in Radar and IR Compatible Stealth Sandwich Structures , 2011 .
[37] K. Sun,et al. Effect of the heat treatment on the infrared emissivity of indium tin oxide (ITO) films , 2011 .
[38] Wan-cheng Zhou,et al. Effects of substrate roughness on infrared-emissivity characteristics of Au films deposited on Ni alloy , 2011 .
[39] Wan-cheng Zhou,et al. High-temperature application of the low-emissivity Au/Ni films on alloys , 2010 .
[40] Willie J Padilla,et al. Perfect metamaterial absorber. , 2008, Physical review letters.