• Chinese Optics Letters
  • Vol. 14, Issue 4, 042202 (2016)
Lina Shao1、2, Zhaoliang Cao1、*, Quanquan Mu1, Lifa Hu1, Yukun Wang1, Shaoxin Wang1, and Li Xuan1
Author Affiliations
  • 1State Key Laboratory of Applied Optics, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.3788/COL201614.042202 Cite this Article Set citation alerts
    Lina Shao, Zhaoliang Cao, Quanquan Mu, Lifa Hu, Yukun Wang, Shaoxin Wang, Li Xuan. Design of a dynamic refocus system based on the Seidel aberration theory[J]. Chinese Optics Letters, 2016, 14(4): 042202 Copy Citation Text show less

    Abstract

    This Letter presents an optical design method based on the Seidel aberration theory for dynamic refocus systems. The function of a dynamic refocus system is to increase the amount of return photons when a pulsed laser travels over an extended height range. In this study, the dynamic refocus system is a short focal image system. The aberrations of the dynamic refocus system are calculated individually. Aplanatic lenses are used to eliminate the main spherical aberration. A field lens is used to change the stop position in order to eliminate comas and astigmatism. The effectiveness of the initial design results are confirmed, and the designed dynamic refocus objective with an aperture of F-number 0.98 and a focal length of 14.325 mm is achieved. The total motion of the dynamic refocus mirror is approximately 216 μm at heights that ranged from 8 to 18 km. The optimum result shows that the dynamic refocus system is an ideal optical image system at each conjugating height with 10 km sample thicknesses.
    ΔzΔz=(ff+z)2,(1)

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    1fe=1fa+1fbΔdfafb,(2)

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    SI=luni(ii)(iu).(3)

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    l=R(n+n)n,(4)

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    {R1=R2=ndn+1R3=R4=nd.(5)

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    {Lh1=0Lh1=dnLh2=Lh2=R3n1.(6)

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    Δd1=Lh1Lh2=R3n1.(7)

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    {LH12=f12Δd1f2LH12=f12Δd1f1,(8)

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    Δd2=LH12+Lh2.(9)

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    fDRO=0.8993d+0.4248.(10)

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    {SII=luni(ii)(iu)iziSIII=luni(ii)(iu)(izi)2.(11)

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    {P=ni(ii)(iu)W=(ii)(iu).(12)

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    {SII=hzPJWSIII=hz2hP2JhzhW+J2Φ,(13)

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    SIV=J2Φn.(14)

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    SIV=J2(φDROn+φDRM1),(15)

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    Lina Shao, Zhaoliang Cao, Quanquan Mu, Lifa Hu, Yukun Wang, Shaoxin Wang, Li Xuan. Design of a dynamic refocus system based on the Seidel aberration theory[J]. Chinese Optics Letters, 2016, 14(4): 042202
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