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胆甾相液晶温控旋光色散特性的研究 被引量:3

Study of cholesteric liquid crystal temperature-control ORD characteristic
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摘要 胆甾相液晶的螺距易受温度和电压的影响,螺距变化时,胆甾相液晶的旋光色散特性发生相应的变化。实验证明:温度对胆甾相液晶旋光色散特性的影响与所对应的波长范围有关,在不同的波长范围内,温度对其旋光色散特性的影响规律不同;温度对胆甾相液晶旋光色散特性的影响还与所测试的波长离该温度下选择反射波带的远近有关,离选择反射波带越近,温度对其旋光色散特性的影响越大。实验表明:温度变化时,胆甾相液晶的旋光色散特性的变化是偏振透射谱移动的一个重要原因。 Screw-pitch of cholesteric liquid crystal is affected easily by temperature and voltage. Cholesteric liquid crystal optical rotatory dispertion(ORD) characteristic is change when crew-pitch changes. Experiment maked chear: when cholesteric liquid crystal optical rotatory dispertion characteristic is influence by temperature, the influenced concerned with researchful wavelength area. Changed rules of cholesteric liquid crystal optical rotatory dispertion characteristic is differ when investigative wavelength area vary. The cholesteric liquid crystal optical rotatory dispertion characteristic is impacted by temperature. The influence relate to the distance from the tested wavelength to selective reflection band, the distance smaller, the impact lager. Experiments prove that changes of optical rotatory dispertion are one importance factor for changes of depolarization when temperature changes, one importance factor for shift of polarization transmission spectrum too.
出处 《光学技术》 EI CAS CSCD 北大核心 2008年第3期352-355,358,共5页 Optical Technique
关键词 胆甾相液晶 旋光色散 选择反射波带 焦锥态 方格栅图案 cholesteric liquid crystal optical rotatory dispertion selective reflection band focal conic square grid perturbation
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参考文献8

  • 1周其凤,王新久.液晶高分子[M].北京:科学出版社,1995.230-238.
  • 2云茂金,李国华,吴福全,王宁,孔伟金.利奥型可调谐液晶电光滤波器的特性分析[J].光学学报,2003,23(5):627-631. 被引量:21
  • 3王宁,李国华,云茂金.液晶电控双折射特性的研究[J].中国激光,2002,29(12):1064-1066. 被引量:42
  • 4云茂金,李国华,孔勇,范树海,王宁.液晶调谐滤光片对Ar^+激光器谱线的提取[J].中国激光,2002,29(2):135-137. 被引量:7
  • 5Kiselev A D, Sluckin T J. Twist of cholesteric liquid crystal cells:Stability of helical structures and anchoring energy effects [J]. Physical Review E,2005,71,031704: 1-11.
  • 6Shibaev P V, Kopp V I, Genack A Z, Photonic materials based on mixtures of cholesteric liquid crystals with polymers[J]. J. Phys. Chem. 13,2003, 107:6961-6964.
  • 7Sarov Y, et al. Optical properties of polymer dispersed cholesteric liquid crystals[J]. Bulg. J. Phys., 2004,31 : 33-38.
  • 8Ramos L, et al. Rheology of defect networks in cholesteric liquid crystals[J]. Physical Review E, 2002,66, 031711: 1-10.

二级参考文献23

  • 1申瑞林,宋开,张阳安,李玲,叶培大.液晶可调谐光滤波器的实验研究[J].中国激光,1997,24(1):41-45. 被引量:3
  • 2Mallison S. Wavelength-selective filters for single-mode fiber WDM systems using Fabry-Perot interferometer.Appl. Opt. , 1987, 26(3):430-436
  • 3Patel J S, Maceda M W. Tunable polarization diversity liquid crystal wavelength filter. IEEE Photo Technol.Lett., 1991, 3(8):213-215
  • 4Staromlynska J. Electrooptic broadband tunable filters using liquid crystals. J. Modern Opt., 1990, 37 (4):639-652
  • 5Seymour R S, Rees S M. Design considerations for a liquid crystal Lyot filter for laser bathymetry. Opt. Engng. ,1994, 33(3):915-923
  • 6Wu Shin-Tson. Design of a liquid crystal based electrooptic filter. Appl. Opt. , 1989, 28(1) :48-52
  • 7YunMaojin LiGuohua WangNing.Research in electro—optical tunable liquid crystal filter[J].光学学报,2002,22(8).
  • 8Patel J S, Lee Sin-Doo. Electrically tunable and polarization insensitive FP etalon with a Liquid crystal film. Apply. Phys. Lett. , 1991, 55(22):2491-2493
  • 9Matsumoto S, Hirabayshi K, Sakata S et al.. Tunable wavelength filter using nano-sized droplets of liquid crystal. IEEE Photo Technol. Lett., 1999, 11(4):442-444
  • 10Maeda M W, Patel J S, Lin Chinlon et al.. Electronically tunable liquid crystal etalon filter for high-density WDM systems. IEEE Photo Technol. Lett. , 1990, 2(11) :820-822

共引文献54

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  • 1刘厚通,李国华,郝殿中.螺状相液晶旋光特性理论模拟与实验研究[J].光学学报,2007,27(2):329-334. 被引量:6
  • 2Drzaic P. Putting liquid crystal droplets to work: a short history of polymer dispersed liquid crystals [J]. Liquid Crystals, 2006, 33:1281-1285.
  • 3Doane J W. PDLC shutters: where has this technology gone? [J]. Liquid Crystals, 2006,33: 1313- 1314.
  • 4Wu B G, West J L, Doane J W. Angular discrimination of light transmission through polymer-dispersed liquid crystal films [J]. J. Appl. Phys., 1987, 62(9):3925- 3931.
  • 5Wu B G, Erdmann J H, Doane J W. Response times and voltages for PDLC light shutters [J]. Liquid Crystals, 1989, 5(5):1453-1465.
  • 6Malik P, Raina K K. Droplet orientation and optical properties of polymer dispersed liquid crystal composite films [J]. Optical Materials, 2004,27 : 613-617.
  • 7West J L, Zhang K, Zhang M, et al. Stressed liquid crystals and their application [J]. SPIE, 2005,5936:0L, 1-10.
  • 8Ermo0ld M L, Rai K, Fontecchio A K. Hydrostatic pressure response of polymer-dispersed liquid crystal gratings [J]. Journal of Applied Physics, 2005,97:104905.
  • 9Zhang G Q. Stressed liquid crystals: Properties and applications [D]. Kent State University, 2007.
  • 10Amimori I, Priezjev N V, Pelcovits R A, et al. Optomechanical properties of stretched polymer dispersed liquid crystal films for scattering polarizer applications [J]. Journal of Applied Physics, 2003, 93(6):3248-3251.

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