• Journal of Applied Optics
  • Vol. 43, Issue 4, 809 (2022)
Jiahui QU1,1,1,1,1,1, Haiyang ZHANG1,1,1,1,1,1,*, Yu FAN1,1,1, Lin WANG1,1,1,1,1,1..., Heying WANG1,1,1,1,1,1 and Changming ZHAO1,1,1,1,1,1|Show fewer author(s)
Author Affiliations
  • 11Key Laboratory of Photoelectronic Imaging Technology and System (Ministry of Education), Beijing Institute of Technology, Beijing 100081, China
  • 12School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China
  • 13Key Laboratory of Optoelectronic Countermeasure Testing and Evaluation Technology, Luoyang 471003, China
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    DOI: 10.5768/JAO202243.0407004 Cite this Article
    Jiahui QU, Haiyang ZHANG, Yu FAN, Lin WANG, Heying WANG, Changming ZHAO. Mechanism of multi-wavelength laser detection of micro-camera[J]. Journal of Applied Optics, 2022, 43(4): 809 Copy Citation Text show less

    Abstract

    Based on the detection and transmission characteristics of different wavelength bands of lasers, by analyzing the echo transmission characteristics of typical micro-cameras, a research scheme for multi-wavelength laser feature detection of micro-camera was proposed. The theories of geometric optics and wave optics were used to analyze the structure of the micro-camera and its reflection spectral characteristics, and the echo light field at a certain detection distance was calculated and simulated. On this basis, a multi-wavelength laser detection system was built. The experimental results show that within a certain depth of field, the micro-camera with infrared cut-off filter has the obvious echo spot diffraction ring characteristics for visible light, high fringe contrast and long detectable distance; in the near-infrared band, the target echo power is low, the back-scattering interference is serious, and the detectable distance is short; the short-wave infrared band is hardly affected by the infrared cut-off filter, and 1 550 nm is in the eye-safe band. The experimental results are consistent with the numerical analyses and theoretical simulation results, which indicate the feasibility of short-wave infrared laser detection of micro-camera.
    U0(x0,y0)=Aexp(jkL)exp[jk2L(x02+y02)](1)

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    P(x0,y0)={1,x02+y02r00,x02+y02>r0(2)

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    A1(fx1,fy1)=F{U0(x0,y0)P(x0,y0)exp[jk2f1(x02+y02)]}fx1=x1λf1,fy1=y1λf1H(fx1,fy1)(3)

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    A2(fx2,fy2)=A1(fx1,fy1)fx=x1λf1,fy=y1λf1ρ(fx1,fy1)exp(jkf1)exp[jπλf1(fx22+fy22)]fx2=x2λf1,fy2=y2λf1(4)

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    A3(fx3,fy3)=F{F1{A2(fx2,fy2)}P(x2,y2)exp[jk2L(x22+y22)]}H(fx3,fy3)(5)

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    A(fx,fy)=F{F1{A3(fx3,fy3)}P(x3,y3)exp[jk2L(x32+y32)]}H(fx,fy)(6)

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    I=E(x,y)E*(x,y)(7)

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    ΔL1=ll1=δFl(lf)f2+δF(lf)(8)

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    ΔL2=l2l=δFl(lf)f2δF(lf)(9)

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    ΔL1=δFl(lf)f2+δF(lf)=1.543m(10)

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    ΔL2=δFl(lf)f2δF(lf)=2.842m(11)

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    ΔL1=δFl(lf)f2+δF(lf)=1.475m(12)

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    ΔL2=δFl(lf)f2δF(lf)=3.103m(13)

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    Jiahui QU, Haiyang ZHANG, Yu FAN, Lin WANG, Heying WANG, Changming ZHAO. Mechanism of multi-wavelength laser detection of micro-camera[J]. Journal of Applied Optics, 2022, 43(4): 809
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