Development of an optical refractometer by analysis of one-dimensional photonic bandgap structures with defects

被引:13
作者
Matías, IR [1 ]
Del Villar, I
Arregui, FJ
Claus, RO
机构
[1] Univ Publ Navarra, Dept Ingn Elect & Eletron, Pamplona, Spain
[2] Virginia Polytech Inst & State Univ, Bradley Dept Elect & Comp Engn, Fiber & Electroopt Res Ctr, Blacksburg, VA 24061 USA
关键词
D O I
10.1364/OL.28.001099
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
theoretical analysis of an optical fiber photonic-bandgap-based refractometer is presented. The design is based on a quarter-wave reflector with one defect. By modifying both the real and the imaginary parts of the index of refraction of the defects we begin to change either the frequency or the amplitude of the localized optical mode. So we could fabricate a specific optical fiber refractometer by combining all the variables: index of refractive index of the defects and the rest of layers, thickness of the defect, number of layers, etc. to yield a large set of design possibilities, for example, detecting wider or thinner ranges of refractive indices, or controlling the detection accuracy. Some rules for the practical implementation of the refractometer are given. (C) 2003 Optical Society of America.
引用
收藏
页码:1099 / 1101
页数:3
相关论文
共 11 条
[1]   Fabrication of microgratings on the ends of standard optical fibers by the electrostatic self-assembly monolayer process [J].
Arregui, FJ ;
Matias, IR ;
Cooper, KL ;
Claus, RO .
OPTICS LETTERS, 2001, 26 (03) :131-133
[2]   Optical fiber nanometer-scale Fabry-Perot interferometer formed by the ionic self-assembly monolayer process [J].
Arregui, FJ ;
Matias, IR ;
Liu, YJ ;
Lenahan, KM ;
Claus, RO .
OPTICS LETTERS, 1999, 24 (09) :596-598
[3]   Polymeric thin films of controlled complex refractive index formed by the electrostatic self-assembled monolayer process [J].
Arregui, FJ ;
Dickerson, B ;
Claus, RO ;
Matias, IR ;
Cooper, KL .
IEEE PHOTONICS TECHNOLOGY LETTERS, 2001, 13 (12) :1319-1321
[4]   Photonic crystal fibers: A new class of optical waveguides [J].
Broeng, J ;
Mogilevstev, D ;
Barkou, SE ;
Bjarklev, A .
OPTICAL FIBER TECHNOLOGY, 1999, 5 (03) :305-330
[5]  
JAMES TD, 2000, P SOC PHOTO-OPT INS, V3937, P80
[6]  
Joannopoulos J. D., 1995, PHOTONIC CRYSTALS MO
[7]   Refractive index of standard oils as a function of wavelength and temperature [J].
Khodier, SA .
OPTICS AND LASER TECHNOLOGY, 2002, 34 (02) :125-128
[8]   Comparative study of the modeling of three-dimensional photonic bandgap structures [J].
Matias, IR ;
Del Villar, I ;
Arregui, FJ ;
Claus, RO .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 2003, 20 (04) :644-654
[9]   Optical switching with a nonlinear photonic crystal: A numerical study [J].
Tran, P .
OPTICS LETTERS, 1996, 21 (15) :1138-1140
[10]   Single-mode waveguide microcavity for fast optical switching [J].
Villeneuve, PR ;
Abrams, DS ;
Fan, SH ;
Joannopoulos, JD .
OPTICS LETTERS, 1996, 21 (24) :2017-2019