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双体布拉格光栅光谱反馈特性的理论研究 被引量:3

Theoretical study on feedback characteristics of double volume Bragg gratings
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摘要 基于Kogelnik理论模型,以平面波为入射光,分析了双体布拉格光栅(VBG)的反馈特性。理论分析表明,采用双VBG结构,通过控制两个VBG的中心波长差,可以使光栅反馈的效率提高,带宽加宽。对于由两块带宽100pm、衍射效率20%的VBG组成的双VBG反馈系统,中心波长相同时,衍射效率最大(33.3%);中心波长相差84pm时,其带宽为单VBG带宽的1.8倍(180pm)。由于VBG的中心波长存在温度漂移特性,因此通过改变双VBG结构中VBG的温度可以实现衍射效率和带宽的改变,为泵浦源的优化提供有效可行的方法。 Assuming the incident light was a plane wave, the feedback characteristics of double volume Bragg gratings (VBGs) were studied based on Kogelnik's theory. According to the analysis, with the structure of the double VBGs, the band- width could be broadened and the diffraction efficiency could be improved through choosing the wavelength differences between the two VBGs. For a system consisting of two VBGs whose bandwidth and diffraction efficiency were 100 pm and 20% respectively, the diffraction efficiency was 33.3% when their central wavelengths had the same value, and the bandwidth could be tuned to 1.8 times (180 pm) of a single VBG's bandwidth. Since there was a thermal shift in VBG's central wavelength, changes in diffrac- tion efficiency and bandwidth could be realized by adjusting the VBGs' temperature. External cavities with double VBGs offers an efficient method for optimizing pumping source.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2013年第7期1643-1647,共5页 High Power Laser and Particle Beams
关键词 半导体激光器 线宽压窄 线宽可调 体布拉格光栅 双光栅 diode laser narrow linewidth linewidth-tunable volume Bragg grating double gratings
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  • 1胡顺星,胡欢陵,张寅超,刘小勤,谭琨.差分吸收激光雷达测量环境SO_2[J].中国激光,2004,31(9):1121-1126. 被引量:23
  • 2苏宙平,楼祺洪,董景星,周军,魏运荣.激光二极管阵列的窄线宽、可调谐输出[J].中国激光,2007,34(6):751-754. 被引量:10
  • 3Page P H, Beach R J, Kanz V K, et al. Multimode-diode-pumped gas (alkali-vapor) laser[J]. Opt Lett, 2006, 31(3) =353-355.
  • 4Zweiback J, Komashko A, Krupke W F. Alkali vapor lasers[C]//Proc of SPIE. 2010:75810G.
  • 5Page R H, Beach R J, Kanz V K, et al. First demonstration of a diode-pumped gas (alkali vapor) laser[C]//Lasers and Electro-Optics. 2005:467-469.
  • 6Zweiback J, Komashko A, Krupke W F. Alkali vapor lasers[C]//Proe of SPIE. 2010:75810G.
  • 7Krupke W F,Beach R J,Kanz V K,et al. Resonance transition 795 nm rubidium faser[J]. Optics Letters, 2003,28 (23): 2336-2338.
  • 8Zameroski N D, Hager G D, Rudolph W, et al. Pressure broadening and collisional shift of Rb D2 absorption line by CH4 , C2H6 , 03H8 , n-O4H10 , and He[J]. Journal of Quantitative Spectroscopy & Radiative Transfer, 2011, 112(1) :59-67.
  • 9Gourevitch A, Venus G, Smirnov V, et al. Efficient pumping of Rb vapor by high-power volume Bragg diode laser[J]. Optics Letters, 2007,32(17) : 2611-2613.
  • 10YANG Zi-ning,WANG Hong-yan, LU Qi-sheng, et al. An 80 W laser diode array with 0. 1 nm linewidth for rubidium vapor laser pumping[J]. Chinese Physics Letters, 2011, 28(10) : 10420201-10420203.

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  • 1张鑫,袁强,赵军普,胡东霞,代万俊,周维,蒋学君,邓武,张崑.高功率激光系统空间滤波小孔等离子体特性[J].强激光与粒子束,2010,22(12):2921-2924. 被引量:7
  • 2曾台英,黄宏彪,张涛,朱健强.神光Ⅱ装置中空间滤波器系统的稳定性设计与分析[J].强激光与粒子束,2007,19(7):1139-1143. 被引量:4
  • 3Berkoff T A, Kersey A D. Experimental demonstration of a fiber Bragg grating accelerometer[J]. IEEE Photon Technol Lett, 1998, 8 (12) : 1677-1679.
  • 4Todd M D, Jhonson G A, Althouse B A, et al. Flexural beam-based fiber Bragg grating accelerometers [J]- IEEE Photon Technol Lett, 1998, 10(11) :1605-1607.
  • 5BaiJ J, Wu Y, Optica Sinica , fiber Bragg gratings[J]. Acta Optica Sinica, 2009, 29(2): 134 137.
  • 6Kersey A D, Berkoff T A, Morey W W. Multiplexed fiber Bragg grating strain sensor system with a fiber fabry perot wavelength filter[J]. Opt Left, 1993, 18(16): 1370-1372.
  • 7Peter K C, Chan C, Jin W, et al. MultipLexing of fiber Bragg grating sensors using an FMCW lechnique[J]. IEEE Photonies Technology LeEters, 1999, 11(11): 1470-1472.
  • 8Bettinger A, Charles C, Osmalin J , et al. Laser beam brightness improvement with high power spatial filtering[J]. Opt Commun , 1976, 18(1): 176-177.
  • 9Pearlman J S. Anthes J P. Closure of pinholes under intense laser radiation[J], Appl Opt .1977,16 (8): 2328-2331.
  • 10Dimakov S A,Zavgorodneva S I,Koval L V,et al. Investigation of the threshold of formation of a plasma screening radiation in a spatial fil-ter[J]. Sov J Quantum Electron-,19S9 y\9(S) ., 803-805.

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