Method for fabricating optical fiber preform using extrusion...

Single-crystal – oriented-crystal – and epitaxy growth processes; – Processes of growth with a subsequent step acting on the...

Reexamination Certificate

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C117S001000, C117S003000, C117S944000, C383S123000, C383S124000, C383S126000

Reexamination Certificate

active

07077900

ABSTRACT:
Disclosed is a method of fabricating a photonic crystal fiber preform using an extrusion die, comprising the step of extruding a first optical material into a plurality of dispersed phases to axially orient the dispersed phases.

REFERENCES:
patent: 6496632 (2002-12-01), Borrelli et al.
Birks, T.A. et al., IEEE Photonics Technology Letters, vol. 11, No. 6, pp. 674-676, (1999).
Barkou S.E. et al., Technical Digest, vol. 4, pp. 117-119, (1999).
“Dispersion Compensation Using Single-Material Fibers” By T.A. Birks, D. Mogilevtsev, J.C. Knight, and P.St. J. Russell, IEEE Photonics Technology Letters, vol. 11, No. 6., pp. 674-676, Jun. 1999.
“Dispersion Properties of Photonic Bandgap Guiding Fibers” By Stig E. Barkou, Jes Broeng, and Anders Bjarklev, Department of Electromagnetic Systems, Technical University of Denmark, Building 348, DK-2800 Lyngby, Denmark, pp. 117-119.
J.C. Knight et al., “All-silica single-mode optical fiber with photonic crystal cladding”, Optics Letters, vol. 21, No. 19, Oct. 1, 1996, pp. 1547-1549.
T.A. Birks et al., “Endlessly single-mode photonic crystal fiber”, Optics Letters, vol. 22, No. 13, Jul. 1, 1997, pp. 961-963.
J.C. Knight et al., “Photonic Band Gap Guidance in Optical Fibers”, Science, vol. 282, Nov. 20, 1998, pp. 1476-1478.
T.A. Birks et al., “Full 2-D photonic bandgaps in silica/air structures”, Electronics Letters, vol. 31, No. 22, Oct. 26, 1995, pp. 1941-1943.
Jes Broeng et al., “Photonic Crystal Fibers: A New Class of Optical Waveguides”, Optical Fiber Technology 5, 1999, pp. 305-330, Academic Press.

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