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光学胶折射率对渥拉斯顿棱镜透射性能的影响

王海峰, 吴福全, 郝殿中, 王涛, 张姗, 王晶

王海峰, 吴福全, 郝殿中, 王涛, 张姗, 王晶. 光学胶折射率对渥拉斯顿棱镜透射性能的影响[J]. 激光技术, 2007, 31(6): 668-670.
引用本文: 王海峰, 吴福全, 郝殿中, 王涛, 张姗, 王晶. 光学胶折射率对渥拉斯顿棱镜透射性能的影响[J]. 激光技术, 2007, 31(6): 668-670.
WANG Hai-feng, WU Fu-quan, HAO Dian-zhong, WANG Tao, ZHANG Shan, WANG Jing. Influence of the refractive index of optical cement on Wollaston prisms transmitting performance[J]. LASER TECHNOLOGY, 2007, 31(6): 668-670.
Citation: WANG Hai-feng, WU Fu-quan, HAO Dian-zhong, WANG Tao, ZHANG Shan, WANG Jing. Influence of the refractive index of optical cement on Wollaston prisms transmitting performance[J]. LASER TECHNOLOGY, 2007, 31(6): 668-670.

光学胶折射率对渥拉斯顿棱镜透射性能的影响

详细信息
    作者简介:

    王海峰(1981-),男,硕士研究生,主要从事偏光技术以及薄膜光学等领域的研究.

    通讯作者:

    吴福全,E-mail:fqwu@mail.qfnu.edu.cn

  • 中图分类号: O436.3

Influence of the refractive index of optical cement on Wollaston prisms transmitting performance

  • 摘要: 为了使渥拉斯顿棱镜具有更好的透射性能,从理论上分析了光学胶折射率对渥拉斯顿棱镜透射光光强分束比、总透射比的影响,得到了关于光学胶折射率与棱镜透射光光强分束比及总透射比的关系式,并拟合出了关系曲线.结果表明,光学胶折射率对渥拉斯顿棱镜的光强分束比和总透射比均有影响;且无论棱镜的结构角是大是小,光强分束比为1和总透射比的最大值对应着同一光学胶折射率,对633nm的光而言,此折射率值为1.570.这一结果对优化渥拉斯顿棱镜的性能是非常重要的.
    Abstract: In order to make the Wollaston prisms get better transmitting performance,the influence of the refractive index of optical cement used in Wollaston prisms on the splitting ratio and the transmission was analyzed in this paper.The relationship formula about the refractive index of optical cement and the splitting ratio and the transmission was worked out,and besides,the relationship curves were fitted by computer.The result indicates that the refractive index of optical cement used in Wollaston prisms can influence both the splitting ratio and the transmission;and especially when the value of the splitting ratio is 1 and the value of total transmission reaches the maximum,the value of refractive index of optical cement is the same.If the wavelength of the light is 633nm,the value of the index is 1.570.The result is very helpful for optimizing the transmitting performance of Wollaston prisms.
  • [1]

    LI J Zh.Handbook of optics[M].Xi'an:Shanxi Science and Technology Press,1986.1454~1462(in Chinese).

    [2]

    LI G H.Optics[M].Ji'nan:Shandong Education Press,1991.405(in Chinese).

    [3]

    LI J L,WANG Y W,LI Y H.Research on performance of CaCO3 for light-polarized device[J].Journal of Synthetic Crystals,2002,31(4):413~416(in Chinese).

    [4]

    HE M Q,ZHENG Y J.The test and design of beam splitter prisms of polarized laser[J].Optical Technique,1983,19(6):21~26(in Chinese).

    [5]

    ZHAO P,WU F Q,REN Sh F,The research of the spectral character of the calcite/BaF2 UV polarizing prism beam deviation angle[J].Laser Technology,2005,29(2):219~221(in Chinese).

    [6]

    WANG W,WU F Q,SU F F.Research of splitting angle and splitting intensity ratio of OE double escape prism[J].Laser Technology,2003,27(6):560~562(in Chinese).

    [7]

    WANG W,WU F Q,SU F F,Symmetric polarization beam splitting prism based on three-element Wollaston prism[J].Optical Technique,2004,30(2):182~183(in Chinese).

    [8]

    ZHANG D Q,WU F Q.Spectral characterization of glan-prism field-angle[J].Journal of Qufu Normal University(Natural Science Edition),2001,27(4):50~52(in Chinese).

    [9]

    YAO Q Y.Optics tutorial[M].Beijing:Higher Education Press,2001.334(in Chinese).

    [10]

    LIAO Y B.Polarization optics[M].Beijing:Science Press,2003.24~25(in Chinese).

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出版历程
  • 收稿日期:  2006-09-24
  • 修回日期:  2006-10-23
  • 发布日期:  2007-12-24

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