Advanced Search
ZHAO Pei-tao, LI Guo-hua, PENG Han-dong, SONG Guo-dong, XU Yan-qiang. New design of optical activity measurement system[J]. LASER TECHNOLOGY, 2005, 29(5): 504-506.
Citation: ZHAO Pei-tao, LI Guo-hua, PENG Han-dong, SONG Guo-dong, XU Yan-qiang. New design of optical activity measurement system[J]. LASER TECHNOLOGY, 2005, 29(5): 504-506.

New design of optical activity measurement system

More Information
  • Received Date: June 28, 2004
  • Revised Date: November 17, 2004
  • Published Date: September 24, 2005
  • In order to improve the precision,a new system is presented to measure the optical activity based on the theory of polarization interference.The measurement result for a quartz crystal optical activity shows that the relative error is less than one percent and the precision and effeet is improved a lot than the traditional one.
  • [1]
    封太忠,吴福全,李国华.石英晶体光轴方向厚度的光学测量研究[J].激光技术,2003,27(2):124~125.
    [2]
    姚启钧.光学教程[M].北京:高等教育出版社,1989.357~362.
    [3]
    CHOU Ch, HUANG Y Ch. Precise optical activity measurement of quartz plate by using a true-sensitive technique[J].Appl Opt,1997,36(16):3604~3609.
    [4]
    LAGOUTTE P,BALCOU P,JACOB D.Optical-activity measurements with bihelicoidal laser eigenstates[J].Appl Opt,1995,34(3):459~462.
    [5]
    王召兵,宋连科.测量偏振面旋转的简单方法[J].光电子·激光,2001,12(4):397~399.
    [6]
    李红霞,吴福全,范吉阳.空气隙间隔格兰型棱镜偏光器透射光强扰动的温度效应[J].物理学报,2003,52(8):2081~2085.
    [7]
    李国华.光学[M].济南:山东教育出版社,1991.428~430.
  • Related Articles

    [1]YANG Kaixin, SUN Wenlei, XIAO Qi, CHEN Zihao. Study on hardness and wear resistance of laser cladding Fe06+(TiC/Mo) composite coatings[J]. LASER TECHNOLOGY, 2023, 47(3): 393-399. DOI: 10.7510/jgjs.issn.1001-3806.2023.03.017
    [2]WU Teng, SHI Wenqing, XIE Linyi, GONG Meimei, HUANG Jiang, XIE Yuping, HE Kuanfang. Forming quality control method of laser cladding Fe-based TiC composite coating[J]. LASER TECHNOLOGY, 2022, 46(3): 344-354. DOI: 10.7510/jgjs.issn.1001-3806.2022.03.008
    [3]WANG Yigang. Microstructure and antioxidant properties of TC11 alloy irradiated by intense pulsed laser[J]. LASER TECHNOLOGY, 2020, 44(5): 639-642. DOI: 10.7510/jgjs.issn.1001-3806.2020.05.019
    [4]JIN Chengjia, CHEN Bingquan, LI Wei, JIAO Jiafei, REN Xudong. Effect of laser shock peening on corrosion resistance of AISI430 ferritic stainless steel[J]. LASER TECHNOLOGY, 2020, 44(2): 212-216. DOI: 10.7510/jgjs.issn.1001-3806.2020.02.013
    [5]LIN Chenghu, REN Jingri, HE Chunlin. Microstructure of in-situ synthesized chromium carbide Ni-base composite coating by laser cladding[J]. LASER TECHNOLOGY, 2014, 38(2): 186-190. DOI: 10.7510/jgjs.issn.1001-3806.2014.02.009
    [6]HE Liang-hua, ZHOU Fang, YANG Hui-yao. Research of in situ synthesis of TiC-TiB2 reinforced Co-based composite coating by laser cladding[J]. LASER TECHNOLOGY, 2013, 37(3): 306-309. DOI: 10.7510/jgjs.issn.1001-3806.2013.03.008
    [7]SI Xiu-li, ZHANG Si-jing, BAI Wei, YANG Yu-ling. Study on in-situ formation of CaTiO3 biocoating via laser cladding and its thermodynamic analysis[J]. LASER TECHNOLOGY, 2013, 37(1): 121-125. DOI: 10.7510/jgjs.issn.1001-3806.2013.01.030
    [8]LIU Ming-kun, TANG Hai-bo, FANG Yan-li, ZHANG Shu-quan, LIU Dong, WANG Hua-ming. Wear resistance of laser clad TiC/Ti-Ti2 Co coating on titanium alloy[J]. LASER TECHNOLOGY, 2011, 35(4): 444-447,452. DOI: 10.3969/j.issn.1001-3806.2011.04.003
    [9]Sun Ronglu, Guo lixin, Dong Shangli, Yang Dezhuang. Study on laser cladding of NiCrBSi (Ti)-TiC metal-ceramiccomposite coatings on titanium alloy[J]. LASER TECHNOLOGY, 2001, 25(5): 343-346.
    [10]Zhang Siyu, Wang Biben, Zheng Kequan. Study of laser smelting-cladding WC-TiC-SiC-Co on carbon steel surface[J]. LASER TECHNOLOGY, 1994, 18(2): 110-113.

Catalog

    Article views (2) PDF downloads (3) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return