• Photonics Research
  • Vol. 11, Issue 5, 839 (2023)
Lehong Huang1、2、3、4, Haochuan Li1, Zhiguo Li1、3、4, Wenbo Zhang1、2、3, Caiwen Ma1、3、4、5、*, Chunmin Zhang2、6、*, Yuxuan Wei1、3、4, Liang Zhou1、4, Xun Li1, Zhiyuan Cheng1、3、4, Xiaohui Guo1, and Shiping Guo2
Author Affiliations
  • 1Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an 710119, China
  • 2School of Physics, Xi’an Jiaotong University, Xi’an 710049, China
  • 3University of Chinese Academy of Sciences, Beijing 100049, China
  • 4Key Laboratory of Space Precision Measurement Technology, Chinese Academy of Sciences, Xi’an 710119, China
  • 5e-mail: cwma@opt.ac.cn
  • 6e-mail: zcm@xjtu.edu.cn
  • show less
    DOI: 10.1364/PRJ.484448 Cite this Article Set citation alerts
    Lehong Huang, Haochuan Li, Zhiguo Li, Wenbo Zhang, Caiwen Ma, Chunmin Zhang, Yuxuan Wei, Liang Zhou, Xun Li, Zhiyuan Cheng, Xiaohui Guo, Shiping Guo. Multiband camouflage design with thermal management[J]. Photonics Research, 2023, 11(5): 839 Copy Citation Text show less
    References

    [1] Y. Li, X. Bai, T. Yang, H. Luo, C.-W. Qiu. Structured thermal surface for radiative camouflage. Nat. Commun., 9, 273(2018).

    [2] O. Ilic, P. Bermel, G. Chen, J. D. Joannopoulos, I. Celanovic, M. Soljacic. Tailoring high-temperature radiation and the resurrection of the incandescent source. Nat. Nanotechnol., 11, 320-324(2016).

    [3] B. W. Bai, X. P. Li, J. Xu, Y. M. Liu. Reflections of electromagnetic waves obliquely incident on a multilayer stealth structure with plasma and radar absorbing material. IEEE Trans. Plasma Sci., 43, 2588-2597(2015).

    [4] K. Iwaszczuk, A. C. Strikwerda, K. Fan, X. Zhang, R. D. Averitt, P. U. Jepsen. Flexible metamaterial absorbers for stealth applications at terahertz frequencies. Opt. Express, 20, 635-643(2012).

    [5] L. Zhao, H. Liu, Z. He, S. Dong. All-metal frequency-selective absorber/emitter for laser stealth and infrared stealth. Appl. Opt., 57, 1757-1764(2018).

    [6] Y. Huang, M. Pu, Z. Zhao, X. Li, X. Ma, X. Luo. Broadband metamaterial as an ‘invisible’ radiative cooling coat. Opt. Commun., 407, 204-207(2018).

    [7] H. Hogstrom, G. Forssell, C. G. Ribbing. Realization of selective low emittance in both thermal atmospheric windows. Opt. Eng., 44, 026001(2005).

    [8] C. Xu, S. Qu, Y. Pang, J. Wang, M. Yan, J. Zhang, Z. Wang, W. Wang. Metamaterial absorber for frequency selective thermal radiation. Infrared Phys. Technol., 88, 133-138(2018).

    [9] T. Yang, X. Bai, D. Gao, L. Wu, B. Li, J. T. L. Thong, C.-W. Qiu. Invisible sensors: simultaneous sensing and camouflaging in multiphysical fields. Adv. Mater., 27, 7752-7758(2015).

    [10] T. Han, X. Bai, J. T. L. Thong, B. Li, C.-W. Qiu. Full control and manipulation of heat signatures: cloaking, camouflage and thermal metamaterials. Adv. Mater., 26, 1731-1734(2014).

    [11] J. Kim, K. Han, J. W. Hahn. Selective dual-band metamaterial perfect absorber for infrared stealth technology. Sci. Rep., 7, 6740(2017).

    [12] D. Liu, H. Ji, R. Peng, H. Cheng, C. Zhang. Infrared chameleon-like behavior from VO2(M) thin films prepared by transformation of metastable VO2(B) for adaptive camouflage in both thermal atmospheric windows. Sol. Energy Mater. Sol. Cells, 185, 210-217(2018).

    [13] W. Wang, L. Zhang, S. Fang, H. Xu, Y. Zhong, Z. Mao. Low-emitting property of lanthanum aluminate and its application in infrared stealth. Sci. Adv. Mater., 7, 1649-1656(2015).

    [14] A. P. Raman, M. A. Anoma, L. Zhu, E. Rephaeli, S. Fan. Passive radiative cooling below ambient air temperature under direct sunlight. Nature, 515, 540-544(2014).

    [15] B. Bhatia, A. Leroy, Y. Shen, L. Zhao, M. Gianello, D. Li, T. Gu, J. Hu, M. Soljacic, E. N. Wang. Passive directional sub-ambient daytime radiative cooling. Nat. Commun., 9, 5001(2018).

    [16] T. Li, Y. Zhai, S. M. He, W. T. Gan, Z. Y. Wei, M. Heidarinejad, D. Dalgo, R. Y. Mi, X. P. Zhao, J. W. Song, J. Q. Dai, C. J. Chen, A. Aili, A. Vellore, A. Martini, R. G. Yang, J. Srebric, X. B. Yin, L. B. Hu. A radiative cooling structural material. Science, 364, 760-763(2019).

    [17] P. C. Hsu, A. Y. Song, P. B. Catrysse, C. Liu, Y. C. Peng, J. Xie, S. H. Fan, Y. Cui. Radiative human body cooling by nanoporous polyethylene textile. Science, 353, 1019-1023(2016).

    [18] X. Xie, X. Li, M. Pu, X. Ma, K. Liu, Y. Guo, X. Luo. Plasmonic metasurfaces for simultaneous thermal infrared invisibility and holographic illusion. Adv. Funct. Mater., 28, 1706673(2018).

    [19] C. Xu, G. T. Stiubianu, A. A. Gorodetsky. Adaptive infrared-reflecting systems inspired by cephalopods. Science, 359, 1495-1500(2018).

    [20] L. Xiao, H. Ma, J. Liu, W. Zhao, Y. Jia, Q. Zhao, K. Liu, Y. Wu, Y. Wei, S. Fan, K. Jiang. Fast adaptive thermal camouflage based on flexible VO2/graphene/CNT thin film. Nano Lett., 15, 8365-8370(2015).

    [21] Y. Qu, Q. Li, L. Cai, M. Pan, P. Ghosh, K. Du, M. Qiu. Thermal camouflage based on the phase-changing material GST. Light Sci. Appl., 7, 26(2018).

    [22] K. K. Du, Q. Li, Y. B. Lyu, J. Ding, Y. Lu, Z. Cheng, M. Qiu. Control over emissivity of zero-static-power thermal emitters based on phase-changing material GST. Light Sci. Appl., 6, e16194(2017).

    [23] Y. Qu, Q. Li, K. Du, L. Cai, J. Lu, M. Qiu. Dynamic thermal emission control based on ultrathin plasmonic metamaterials including phase-changing material GST. Laser Photonics Rev., 11, 1700091(2017).

    [24] M. J. Moghimi, G. Lin, H. Jiang. Broadband and ultrathin infrared stealth sheets. Adv. Eng. Mater., 20, 1800038(2018).

    [25] X. Ye, Y. Zhou, Y. Sun, J. Chen, Z. Wang. Structure and infrared emissivity of collagen/SiO2 composite. Appl. Surf. Sci., 254, 5975-5980(2008).

    [26] Z. Wang, Y. Zhou, Y. Sun. Preparation, characterization and infrared emissivity study of Attapulgite@helical polyurethane composites. J. Inorg. Organomet. Polym., 19, 202-207(2009).

    [27] X. Bu, Y. Zhou, M. He, Z. Chen, T. Zhang. Optically active SiO2/TiO2/polyacetylene multilayered nanospheres: preparation, characterization, and application for low infrared emissivity. Appl. Surf. Sci., 288, 444-451(2014).

    [28] C. Zhang, J. Yang, W. Yuan, J. Zhao, J. Y. Dai, T. C. Guo, J. Liang, G. Y. Xu, Q. Cheng, T. J. Cui. An ultralight and thin metasurface for radar-infrared bi-stealth applications. J. Phys. D, 50, 444002(2017).

    [29] C. Zhang, X. Wu, C. Huang, J. Peng, C. Ji, J. Yang, Y. Huang, Y. Guo, X. Luo. Metamaterials: flexible and transparent microwave–infrared bistealth structure. Adv. Mater. Technol., 4, 1900063(2019).

    [30] S. Chandra, D. Franklin, J. Cozart, A. Safaei, D. Chanda. Adaptive multispectral infrared camouflage. ACS Photonics, 5, 4513-4519(2018).

    [31] B. Liu, J. M. Shi, J. K. Zhang, Z. G. Li, Z. S. Chen, X. S. Deng. Infrared stealth performance analysis of photonic crystal with high heat dissipation. Opt. Mater., 111, 110689(2021).

    [32] H. Zhu, Q. Li, C. Tao, Y. Hong, Z. Xu, W. Shen, S. Kaur, P. Ghosh, M. Qiu. Multispectral camouflage for infrared, visible, lasers and microwave with radiative cooling. Nat. Commun., 12, 1805(2021).

    [33] W. Zhang, G. Xu, J. Zhang, H. Wang, H. Hou. Infrared spectrally selective low emissivity from Ge/ZnS one-dimensional heterostructure photonic crystal. Opt. Mater., 37, 343-346(2014).

    [34] T. Kim, J.-Y. Bae, N. Lee, H. H. Cho. Hierarchical metamaterials for multispectral camouflage of infrared and microwaves. Adv. Funct. Mater., 29, 1807319(2019).

    [35] B. Vasić, R. Gajić. Graphene induced spectral tuning of metamaterial absorbers at mid-infrared frequencies. Appl. Phys. Lett., 103, 261111(2013).

    [36] H. Zhu, Q. Li, C. Zheng, Y. Hong, Z. Xu, H. Wang, W. Shen, S. Kaur, P. Ghosh, M. Qiu. High-temperature infrared camouflage with efficient thermal management. Light Sci. Appl., 9, 60(2020).

    [37] L. Peng, D. Liu, H. Cheng, S. Zhou, M. Zu. A multilayer film based selective thermal emitter for infrared stealth technology. Adv. Opt. Mater., 6, 1801006(2018).

    [38] M. Pan, Y. Huang, Q. Li, H. Luo, H. Zhu, S. Kaur, M. Qiu. Multi-band middle-infrared-compatible camouflage with thermal management via simple photonic structures. Nano Energy, 69, 104449(2020).

    [39] L. Wang, Y. Yang, X. Tang, B. Li, Y. Hu, Y. Zhu, H. Yang. Combined multi-band infrared camouflage and thermal management via a simple multilayer structure design. Opt. Lett., 46, 5224-5227(2021).

    [40] Y. Cui, K. H. Fung, J. Xu, H. Ma, Y. Jin, S. He, N. X. Fang. Ultra-broadband light absorption by a sawtooth anisotropic metamaterial slab. Nano Lett., 12, 1443-1447(2012).

    [41] E. Maciá. Thermal emission control via bandgap engineering in aperiodically designed nanophotonic devices. Nanomaterials, 5, 814-825(2015).

    [42] M. Pu, C. Hu, M. Wang, C. Huang, Z. Zhao, C. Wang, Q. Feng, X. Luo. Design principles for infrared wide-angle perfect absorber based on plasmonic structure. Opt. Express, 19, 17413-17420(2011).

    [43] N. Bheekhun, A. R. A. Talib, M. R. Hassan. Aerogels in aerospace: an overview. Adv. Mater. Sci. Eng., 2013, 406065(2013).

    [44] Z.-H. Ruan, Y. Yuan, X.-X. Zhang, Y. Shuai, H.-P. Tan. Determination of optical properties and thickness of optical thin film using stochastic particle swarm optimization. Solar Energy, 127, 147-158(2016).

    [45] Y.-M. Liu, G.-J. Chai, X.-H. Wang, B.-L. Zhang. Visible characteristics and calculation of detecting distance for space target. Infrared Technol., 31, 23-26(2009).

    [46] J. M. Luque-Raigon, J. Halme, H. Miguez. Fully stable numerical calculations for finite one-dimensional structures: mapping the transfer matrix method. J. Quant. Spectrosc. Radiat. Transfer, 134, 9-20(2014).

    [47] G. A. Rao, S. P. Mahulikar. Aircraft powerplant and plume infrared signature modelling and analysis. 43rd AIAA Aerospace Sciences Meeting and Exhibit AIAA.

    [48] E. D. Palik. Handbook of Optical Constants of Solids, 465-478(1997).

    [49] Z. Wenjie. Experimental study on high temperature optical constants of typical engineering materials based on ellipsometry(2015).

    Lehong Huang, Haochuan Li, Zhiguo Li, Wenbo Zhang, Caiwen Ma, Chunmin Zhang, Yuxuan Wei, Liang Zhou, Xun Li, Zhiyuan Cheng, Xiaohui Guo, Shiping Guo. Multiband camouflage design with thermal management[J]. Photonics Research, 2023, 11(5): 839
    Download Citation