• Acta Photonica Sinica
  • Vol. 50, Issue 4, 153 (2021)
Cuilian XU, Yueyu MENG, Jiafu WANG, Mingbao YAN, Wenjie WANG, Jinming JIANG, and Shaobo QU*
Author Affiliations
  • Department of Basic Science, Air Force Engineering University, Xi’an710051, China
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    DOI: 10.3788/gzxb20215004.0416001 Cite this Article
    Cuilian XU, Yueyu MENG, Jiafu WANG, Mingbao YAN, Wenjie WANG, Jinming JIANG, Shaobo QU. Optically Transparent Hybrid Metasurfaces for Low Infrared Emission and Wideband Microwave Absorption[J]. Acta Photonica Sinica, 2021, 50(4): 153 Copy Citation Text show less
    References

    [1] Shuomin ZHONG, Lijie WU, Taijun LIU et al. Transparent transmission-selective radar-infrared bi-stealth structure. Optics Express, 26, 16466-16476(2018).

    [2] Hao TIAN, Haitao LIU, Haifeng CHENG. A thin radar-infrared stealth-compatible structure: design, fabrication, and characterization. Chinese Physics B, 23, 025201(2014).

    [3] Cheng ZHANG, Jin YANG, Wei YUAN et al. An ultralight and thin metasurface for radar-infrared bi-stealth applications. Journal of Physics D:Applied Physics, 50, 444002(2017).

    [4] Yongqiang PANG, Yongfeng LI, Mingbao YAN et al. Hybrid metasurfaces for microwave reflection and infrared emission reduction. Optics Express, 26, 11950-11958(2018).

    [5] Changlei ZHANG, Xiaoyu WU, Cheng HUANG et al. Flexible and transparent microwave–infrared bistealth structure. Advanced Materials Technologies, 4, 1900063(2019).

    [6] Gelin MA, Quanxi CAO, Yunxia HUANG. Infrared and radar composite stealth material-doped oxide semiconductor. Infrared Technology, 25, 77-80(2003).

    [7] Chengyong MA, Haifeng CHENG, Gengping TANG等. Research progress of infrared/radar compatible stealth materials. Materials Guide, 21, 126-132(2007).

    [8] Xiaoli CAO, Hongying GE, Honglong XING等. Preparation and performance of MWCNTs/ZnO radar-infrared compatible stealth material. Journal of Fuyang Normal University (Natural Science Edition), 32, 46-50(2015).

    [9] Yanpeng CHEN, Guoyue XU, Tengchao GUO等. Application of modified carbonyl iron powder in infrared/radar compatible coatings. Ordnance Material Science and Engineering, 33, 42-45(2010).

    [10] Zhiyong ZHANG, Manzhang XU, Xiongfei RUAN et al. Enhanced radar and infrared compatible stealth properties in hierarchical SnO2@ZnO nanostructures. Ceramics International, 43, 3443-3447(2017).

    [11] Dong QI, Yongzhi CHENG, Xian WANG et al. Multi-layer composite structure covered polytetrafuoroethylene for visible- infrared-radar spectral Compatibility. Journal of Physics D:Applied Physics, 50, 505108(2017).

    [12] Dong QI, Xian WANG, Yongzhi CHENG et al. Design and characterization of one-dimensional photonic crystals based on ZnS/Ge for infrared-visible compatible stealth applications. Optical Materials, 62, 52-56(2016).

    [13] J T B OVERVELDE, T A DE JONG, Y SHEVCHENKO et al. A three-dimensional actuated origami- inspired transformable metamaterial with multiple degrees of freedom. Nature Communications, 7, 10929(2016).

    [14] D R SMITH. Metamaterials and negative refractive index. Science, 305, 788-792(2004).

    [15] J B PENDRY, D R SMITH. Reversing light with negative refraction. Physics Today, 57, 37-43(2004).

    [16] T BRUNET, J LENG, O MONDAIN-MONVAL. Soft acoustic metamaterials. Science, 34, 323-324(2013).

    [17] Xue JIANG, Bin LIANG, Ruiqi LI et al. Ultra-broadband absorption by acoustic metamaterials. Applied Physics Letters, 105, 243505(2014).

    [18] A TUNIZ, K J KALTENECKER, B M FISCHER et al. Metamaterial fibres for subdiffraction imaging and focusing at terahertz frequencies over optically long distances. Nature Communications, 4, 2706(2013).

    [19] Dawei HU, Jie CAO, Wei LI et al. Optically transparent broadband microwave absorption metamaterial by standing-up closed-ring resonators. Advanced Optical Materials, 5, 1700109(2017).

    [20] Senfeng LAI, Yanghui WU, Xiaobo ZHU et al. An optically transparent ultra-broadband microwave absorber. IEEE Photonics Journal, 9, 5503310(2017).

    [21] Cheng ZHANG, Qiang CHENG, Jin YANG et al. Broadband metamaterial for optical transparency and microwave absorption. Applied Physics Letters, 110, 143511(2017).

    [22] H SHEOKAND, S GHOSH, G SINGH et al. Transparent broadband metamaterial absorber based on resistive films. Journal of Applied Physics, 122, 105105(2017).

    [23] Tianshu LI, Ke CHEN, Guowen DING et al. Optically transparent metasurface Salisbury screen with wideband microwave absorption. Optics Express, 26, 34384-34395(2018).

    [24] T JANG, H YOUN, Y J SHIN et al. Transparent and flexible polarization- independent microwave broadband absorber. ACS Photonics, 1, 279-284(2014).

    [25] Jie ZHAO, Cheng ZHANG, Qiang CHENG et al. An optically transparent metasurface for broadband microwave antireflection. Applied Physics Letters, 112, 073504(2018).

    [26] Jingfan YANG, Cuilian XU, Shaobo QU et al. Optical transparent infrared high absorption metamaterial absorbers. Journal of Advanced Dielectrics, 8, 1850007(2018).

    [27] Shuomin ZHONG, Wei JIANG, Peipeng XU et al. A radar-infrared bi-stealth structure based on metasurfaces. Applied Physics Letters, 110, 063502(2017).

    Cuilian XU, Yueyu MENG, Jiafu WANG, Mingbao YAN, Wenjie WANG, Jinming JIANG, Shaobo QU. Optically Transparent Hybrid Metasurfaces for Low Infrared Emission and Wideband Microwave Absorption[J]. Acta Photonica Sinica, 2021, 50(4): 153
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