Optical waveguides – Having nonlinear property
Reexamination Certificate
2006-11-07
2006-11-07
Lee, John D. (Department: 2874)
Optical waveguides
Having nonlinear property
C359S332000
Reexamination Certificate
active
07133590
ABSTRACT:
This invention pertains to a device for broadening optical wavelength in the 2–14 μm region comprising a light source and a highly nonlinear chalcogenide fiber associated therewith whereby a light signal is passed from the light source into the fiber wherein and through interactions between the light signal and the material, bandwidth of the light signal is broadened in the 2–14 μm region.
REFERENCES:
patent: 6097870 (2000-08-01), Ranka et al.
patent: 6611643 (2003-08-01), Birk et al.
patent: 6796699 (2004-09-01), Birk et al.
patent: 6856737 (2005-02-01), Parker et al.
patent: 6928227 (2005-08-01), Shaw et al.
patent: 7092086 (2006-08-01), Knebel
patent: 2002/0050564 (2002-05-01), Birk et al.
patent: 2005/0122580 (2005-06-01), Birk et al.
patent: 2006/0050749 (2006-03-01), Setzler
Rakich et al. “Broadband supercontinuum based measurements of high-index contrast bandgap devices from 1 to 2 microns.” Lasers and Electro-Optics Society, 2004. LEOS 2004. vol. 2, Nov. 2004, pp. 813-814.
Shaw et al. “Mid-wave IR and long wave IR laser potential of rare-earth doped chalcogenide fiber.” IEEE Journal of Quantum Electronics. vol 37, Issue 9, Sep. 2001. p. 1127-1137.
A. Ferrando, E. Silvestre, J.J. Miret et al, “Designing a Photonic Crystal Fibre with Flattened Chromatic Dispersion”, Electron Lett., vol. 35 No. 4, pp. 325-327 (1999).
A. Ferrando, E. Silvestre, P. Andres, J.J. Miret, M.V. Andres, “Designing the properties of Dispersion Flattened Photonic Crystal Fibers”, Optics Express, vol. 9, No. 18, pp. 687-689 (2001).
J.M. Dudley, L. Provino, N. Grossard, H. Maillotte, “Supercontinuum Generation in Air-Silica microstructured fibers with Nanosecond and Femiosecond Pulse Pumping”, J. Opt. Soc. Amer. B., vol. 19., No. 4, pp. 765-771 (2002).
P.A. Chambert, S.V. Popov, J.R. Taylor, “Generation of multiwatt, Broadband continua in Holey Fiber”, Opt. Lett., vol. 27, No. 2, pp. 122-124 (2003).
A.V. Avdokhin, S.V. Popov, and J.R. Taylor, “Continuous Wave, High Power, Raman Continuum Generation in Holey Fiber”, Opt. Lett., vol 28, No. 15, pp. 1353-1355 (2003).
P.A. Thielen, L.B. Shaw, L.S. Sanghera, and I.D. Aggarwal. “Modeling of a mid-IR Chalcogenide Fiber Raman Amplification”, Opt. Lett., vol. 11, No. 24, pp. 3248-3253 (2003).
P.A. Thielen, L.B. Shaw, P.C. Pureza, V.Q. Nguyen, J.S. Sanghera, and I.D. Aggarwal. “Small-Core As-Se Fiber for Raman Amplification”, Opt. Lett. vol. 28, pp. 1406-1408 (2003).
J.M. Harbold, F.O. Ilday, F.W. Wise, J.S. Sanghera, V.Q. Nguyen, L.B. Shaw, and I.D. Aggarwal, “Highly Nonlinear As-S-Se Gasses for all Otical Switching”, Opt. Lett., vol. 27, pp. 119-121 (2002).
Aggarwal Ishwar D.
Kung Fred
Sanghera Jasbinder S.
Shaw Leslie B.
Thielen Peter A.
Ahmad Aisha
Karasek John J.
Lee John D.
Peace Rhonda S.
The United States of America as represented by the Secretary of
LandOfFree
IR supercontinuum source does not yet have a rating. At this time, there are no reviews or comments for this patent.
If you have personal experience with IR supercontinuum source, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and IR supercontinuum source will most certainly appreciate the feedback.
Profile ID: LFUS-PAI-O-3646172