• Chinese Optics Letters
  • Vol. 13, Issue 2, 020901 (2015)
Zhiyong Lu*, Jianfeng Sun, Yu Zhou, Ning Zhang, Zhiwei Sun, and Liren Liu
Author Affiliations
  • Key Laboratory of Space Laser Communication and Detection Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
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    DOI: 10.3788/COL201513.020901 Cite this Article Set citation alerts
    Zhiyong Lu, Jianfeng Sun, Yu Zhou, Ning Zhang, Zhiwei Sun, Liren Liu. Visualized measurement of the electric field in large aperture LiNbO3 crystal by digital holographic interferometry[J]. Chinese Optics Letters, 2015, 13(2): 020901 Copy Citation Text show less

    Abstract

    The electric field distribution in LiNbO3 crystal under different electrode shape is presented by using the digital holographic interferometry. Three configurations of phase modulator including the rectangular electrode type, single-triangle electrode type, and dual-triangle electrode type are performed in this experiment. The nonuniform electric field distribution in these phase modulators are observed and the electric field increases with voltage increasing. The digital holographic interferometry with high electro-optic effect improves the measurement precision. The digital holographic interferometry provides an effective way for studying the electric field distribution. Such in situ quantitative analysis of electric field distribution is a key to optimizing electrode shape.
    i(x,z)=a(x,z)+b(x,z)exp(jφ(x,z))exp(j2πf0xx)+b*(x,z)exp(jφ(x,z))exp(j2πf0xx),(1)

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    I(ξ,η)=A(ξ,η)+C+1(ξf0x,η)+C1(ξ+f0x,η),(2)

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    c(x,z)=F1{C+1(ξ,η)},(3)

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    φ(x,z)=arctan(Im[c(x,z)]Re[c(x,z)]).(4)

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    φ(x,z)=2πλ0L[n(x,y,z)n0]dy.(5)

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    Δn=n(x,y,z)n0=12ne3γ33Ez.(6)

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    φ(x,z)=2πλ0L[12ne3γ33E(x,y,z)]dy.(7)

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    0LE(x,y,z)dyE(x,z)L,(8)

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    Zhiyong Lu, Jianfeng Sun, Yu Zhou, Ning Zhang, Zhiwei Sun, Liren Liu. Visualized measurement of the electric field in large aperture LiNbO3 crystal by digital holographic interferometry[J]. Chinese Optics Letters, 2015, 13(2): 020901
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