• Optics and Precision Engineering
  • Vol. 30, Issue 19, 2313 (2022)
Aoling LI1, Huigao DUAN1,3, Honghui JIA1, Jianhua LI4, and Yueqiang HU1,2,*
Author Affiliations
  • 1National Engineering Research Center for High-Efficiency Grinding, College of Mechanical and Vehicle Engineering, Hunan University, Changsha40082, China
  • 2Advanced Manufacturing Laboratory of Micro-Nano Optical Devices, Shenzhen Research Institute, Hunan University, Shenzhen518000, China
  • 3Greater Bay Area Institute for Innovation, Hunan University, Guangzhou51100, China
  • 4National Key Laboratory of Science and Technology on Test Physics & Numerical Mathematical, Beijing100076, China
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    DOI: 10.37188/OPE.20223019.2313 Cite this Article
    Aoling LI, Huigao DUAN, Honghui JIA, Jianhua LI, Yueqiang HU. Research progress of metalenses in mid-infrared band[J]. Optics and Precision Engineering, 2022, 30(19): 2313 Copy Citation Text show less

    Abstract

    Mid-infrared imaging devices, especially those operating in the atmospheric window (3-5 μm and 8-12 μm), have important applications in infrared imaging and detection. Traditional mid-infrared imaging devices are usually bulky, expensive and complicated, which hinder the development of lightweight and integration in the future. The metalens, which are composed of subwavelength micro-nano structures arrayed in a periodic or aperiodic manner, have the characteristics of thinness, easy of integration and multi-functionality, providing new possibilities for future miniaturization needs. In this paper, the research progress of metalens in the mid-infrared band is reviewed, then the basic phase control methods of the metalens and its mechanism for achieving high focusing efficiency, eliminating chromatic aberration and monochromatic aberration in the mid-infrared band are introduced. Moreover, this paper sort out the imaging applications of mid-infrared metalens, including polarization dependent imaging, tunable and reconfigurable imaging and other imaging applications. Finally, the challenges and future prospects of this emerging field are discussed.
    φ=2πλneffH(1)

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    EL/Rt=t0+te2êL/R+t0-te2e2θêR/L(2)

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    φmr,λ=-2πλmaxr2+f2-f-2π(r2+f2-f)(1λ-1λmax)(3)

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    φr,ω=φr,ωd+φr,ωωω=ωdω-ωd+2φr,ω2ωω=ωdω-ωd2+(4)

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    φx,y=-2πλ(x2+y2+f2-f)(5)

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    φx,y=ManρR02n(6)

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    φx,y=-k02f(x2+y2)-k0 xsin θ=-k02f[(x+fsin θ)2+y2]+fk0(sin θ)22.(7)

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    S0S1S2S3=Ix+IyIx-Iy-S0+2I45-S0+2ILCP(8)

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    Aoling LI, Huigao DUAN, Honghui JIA, Jianhua LI, Yueqiang HU. Research progress of metalenses in mid-infrared band[J]. Optics and Precision Engineering, 2022, 30(19): 2313
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