Microstructured optical fibers and methods

Optical waveguides – Optical fiber waveguide with cladding – Utilizing nonsolid core or cladding

Reexamination Certificate

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C385S123000, C385S124000, C385S126000, C385S127000, C385S128000, C398S164000

Reexamination Certificate

active

07450806

ABSTRACT:
Microstructured optical fiber and method of making. Glass soot is deposited and then consolidated under conditions which are effective to trap a portion of the consolidation gases in the glass to thereby produce a non-periodic array of voids which may then be used to form a void containing cladding region in an optical fiber. Preferred void producing consolidation gases include nitrogen, argon, CO2, oxygen, chlorine, CF4, CO, SO2and mixtures thereof.

REFERENCES:
patent: 5191206 (1993-03-01), Boiarski et al.
patent: 5802236 (1998-09-01), DiGiovanni et al.
patent: 6614974 (2003-09-01), Elrefaie et al.
patent: 6671442 (2003-12-01), Wang et al.
patent: 6687445 (2004-02-01), Carter et al.
patent: 6766088 (2004-07-01), Hasegawa et al.
patent: 6773825 (2004-08-01), Pickrell et al.
patent: 6795635 (2004-09-01), Fajardo et al.
patent: 6904215 (2005-06-01), Christoff et al.
patent: 7039284 (2006-05-01), Nakahara
patent: 7054513 (2006-05-01), Herz et al.
patent: 7072552 (2006-07-01), Manyam et al.
patent: 7142758 (2006-11-01), Herz et al.
patent: 7174078 (2007-02-01), Libori et al.
patent: 2004/0069019 (2004-04-01), Carter et al.
patent: 2005/0094954 (2005-05-01), Pickrell et al.
patent: 2006/0034574 (2006-02-01), Guan et al.
patent: 1617243 (2004-03-01), None
patent: 1564569 (2004-09-01), None
patent: WO02/075393 (2002-09-01), None
patent: WO02/102730 (2002-12-01), None
Baggett, Joanne C. et al, “Improving Bending Losses in Holey Fibers”, Optical Fiber Communication Conference, 2005. Technical Digest. OFC/NFOEC, Mar. 6-11, 2005, vol. 3, 3 pp.
Ellis, Frederick P. K., “Fabrication of Random Hole Optical Fiber Preforms by Silica Sol-Gel Processing”, Thesis to be submitted to Virginia Polytechnic Institute and State University, Feb. 19, 2004, 34 pp.
Guan, Ning et al, “Characteristics of field confined holey fiber analyzed by boundary element method”, OFC 2002, Mar. 17-22, 2002, pp. 525-527.
Holton, Carvel et al, “Colloidal Quantum Dots Entrained in Micro-structured Optical Fibers”, Proceedings of SPIE, 2004, vol. 5335, pp. 258-265.
Kominsky, Daniel, “Development of Random Hole Optical Fiber and Crucible Technique Optical Fibers”, Dissertation submitted to Virginia Polytechnic Institute and State University, Sep. 6, 2005, 142 pp.
Kominsky, D. et al, “Generation of random-hole optical fiber”, Optics Letters, Aug. 15, 2003, vol. 23, No. 16, pp. 1409-1411.
Monro, Tanya M. et al, “Holey fibers with random cladding distributions”, Optics Letters, Feb. 15, 2000, vol. 25, No. 4, pp. 206-208.
Monro, Tanya M. et al, “Holey fibers with randomly arranged air holes”, Conference on Lasers and Electro-Optics, 2000. (CLEO 2000), pp. 607-608.
Monro, Tanya M. et al, “New possibilities with holey fibers”, Optical Fiber Communication Conference, 2000, vol. 3, pp. 106-108.
Pickrell, Gary et al, “Fiber Optic Chemical Sensing”, Proceedings of SPIE, vol. 5998, Nov. 5, 2005, 15 pp.
Pickrell, Gary et al, “Microstructural Analysis of Random Hole Optical Fibers”, IEEE Photonics Technology Letters, Feb. 2004, vol. 16, No. 2, pp. 491-493.
Pickrell, Gary R. et al, “New fabrication technique for random-hold optical fibers”, Proceedings of SPIE—The International Society for Optical Engineering, v 5589, Fiber Optic Sensor Technology and Applications III, Oct. 26-28, 2004, pp. 257-265.
Pickrell, Gary R. et al, “Novel Techniques for the Fabrication of Holey Optical Fibers”, The International Society for Optical Engineering, v 4578, Fiber Optic Sensor Technology and Applications 2001, Oct. 30-Nov. 1, 2001, pp. 271-282.
Pickrell, G. et al, “Random-hole optical fiber evanescent-wave gas sensing”, Optics Letters, Jul. 1, 2004, vol. 29, No. 13, pp. 1476-1478.
Pickrell, Gary R. et al, “Random Hole Optical Fibers”, Proceedings of SPIE, Industrial and Highway Sensors Technology, 2003, vol. 5272, pp. 207-215.
Richardson, D. J. et al, “Advances in Microstructured Fiber Technology”, Proceedings of 2005 IEEE/LEOS Workshop on Fibres and Optical Passive Components, Jun. 22-24, 2005, pp. 1-9.
Shinohara, Hiromichi, “Broadband Access in Japan: Rapidly Growing FTTH Market”, IEEE Communications Magazine, Sep. 2005, pp. 72-78.
Wu, Tzong-Lin et al, “A Novel Ultraflattened Dispersion Photonic Crystal Fiber”, IEEE Photonics Technology Letters, Jan. 2005, vol. 17, No. 1, pp. 67-69.
Y Bing et al, “Low-loss Holey Fiber”, Hitachi Cable Review No. 24, Aug. 2005, pp. 1-5.
S Matsuo et al, “Bend-Insensitive and Low-Splice-Loss Optical fiber for Indoor Wiring in FTTH”, Optical Fiber Communication Conference, 2004, Feb. 23-27, 2004, vol. 2, 3 pgs. with descriptive sheet attached.

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