High power optical apparatus employing large-mode-area,...

Optical: systems and elements – Optical amplifier – Optical fiber

Reexamination Certificate

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

C359S334000, C359S341320

Reexamination Certificate

active

07916386

ABSTRACT:
Optical apparatus includes a multimode, gain-producing fiber for providing gain to signal light propagating in the core of the fiber, and a pump source for providing pump light that is absorbed in the core, characterized in that (i) the pump source illustratively comprises a low brightness array of laser diodes and a converter for increasing the brightness of the pump light, (ii) the pump light is coupled directly into the core, and (iii) the area of the core exceeds approximately 350 μm2. In one embodiment, the signal light propagates in a single mode, and the pump light co-propagates in at least the same, single mode, both in a standard input fiber before entering the gain-producing fiber, and a mode expander is disposed between the input fiber and the gain-producing fiber. In another embodiment, multiple pumps are coupled into the core of the gain-producing fiber. The pumps may generate light of the same wavelength or of different wavelengths. In accordance with a particular embodiment of our invention, we have demonstrated amplification of nanosecond optical pulses at 1545 nm in a single clad Er-doped fiber having a core area of 875 μm2; the core was pumped by a high brightness Raman laser at 1480 nm; and the pulses had a record peak power of several hundred kW.

REFERENCES:
patent: 5859942 (1999-01-01), Ueda
patent: 5864644 (1999-01-01), DiGiovanni et al.
patent: 6731837 (2004-05-01), Goldberg et al.
patent: 7013678 (2006-03-01), DiGiovanni et al.
patent: 2002/0063952 (2002-05-01), Nyman et al.
patent: 2002/0159694 (2002-10-01), Yano
patent: 2003/0156605 (2003-08-01), Richardson et al.
patent: 2004/0247272 (2004-12-01), Dawson et al.
patent: 2005/0008044 (2005-01-01), Fermann et al.
patent: 2005/0163426 (2005-07-01), Fermann et al.
patent: 2006/0103919 (2006-05-01), Digiovanni et al.
patent: 2006/0187541 (2006-08-01), Starodoumov
patent: 2006/0263018 (2006-11-01), Takagi et al.
patent: 2406423 (2003-06-01), None
patent: 1298765 (2003-02-01), None
patent: 1487070 (2004-12-01), None
patent: 2008187176 (2008-08-01), None
patent: WO2006027298 (2006-03-01), None
B. Desthieux et al., “111 kw (0.5 mJ) pulse amplification . . . , ”Appl. Phys. Lett., vol. 63, No. 5, pp. 586-588 (Aug. 1993).
N. Park et al., “High-Power Er-Yb Doped Fiber Amplifier . . . ,”IEEE Photon. Technol. Lett., vol. 8, No. 9, pp. 1148-1150 (Sep. 1996).
D. Taverner et al., “158-μJ pulses from a single-transverse-mode . . . ,”Opt. Lett., vol. 22, No. 6, pp. 378-380 (Mar. 1997).
H. I. Offerhaus et al., “High-energy single-transverse-modeQ-switched . . . ,”Opt. Lett., vol. 23, No. 21, pp. 1683-1685 (Nov. 1998).
A. Galvanauskas, “Mode-Scalable Fiber-Based Chirped Pulse . . . ,”IEEE J. Selected Topics in Quant. Electr., vol. 7, No. 4, pp. 504-517 (Jul./Aug. 2001).
M. Savage-Leuchs et al., “High pulse energy extraction . . . ,”Proc. SPIE, vol. 6102, 610207-(1-8) (2006).
J. M. Fini, “Bend-resistant design of conventional and microstructure fibers . . . ,”Opt. Express, vol. 14, No. 1, pp. 69-81 (Jan. 2006).
D. J. DiGiovanni et al., “Progress in All-Fiber Components,” Proc. SPIE, vol. 6102, pp. 1-5, Fiber Lasers III: Technology, Systems, and Applications, A. J. W. Brown et al., Ed., 6102L (Feb. 2006).
“Encyclopedia of Laser Physics and Technology,” pp. 1-2, found on an internet website at URL http://www.rp-photonics.com/brightness.html on Jan. 24, 2007.
M Borecki et al: “Multimode amplifiers with fibers doped Nd or Er working point analysis” Proceedings of the SPIE, vol. 4239, 2000, pp. 176-181, SP002474476—the whole document.
Pedersen B et al: “Detailed Design Analysis of Erbium-Doped Fiber Amplifiers” IEEE Photonics Technology Letters, IEEE Service Center, Piscataway, NJ, US, vol. 3, No. 6, Jun. 1, 1991, pp. 548-550, XP000227345 ISSN: 1041-1135—the whole document.
Karpov V I et al: “Laser-diode-pumped phosphosilicate-fiber Raman laser with an output power of 1 W at 1.48 mu m” Optics Letters, OSA, Optical Society of America, Washington, DC, US, vol. 24, No. 13, Jul. 1, 1999, pp. 887-889, XP002185374 ISSN: 0146-9592—p. 887, col. 2, paragraph 2—p. 888, col. 1, paragraph 2.
J. Chirravuri et al: “Multiwavelength pumping of Erbium-Doped Fiber Amplifiers in the 980 nm Band” Proceedings of the SPIE Fiber Laser Sources and Amplifiers IV, vol. 1789, 1992, pp. 214-219, XP002491578—the whole document.
Taverner D et al: “158-MUJ Pulses From a Single-Transverse-Mode, Large-Mode-Area Erbium” Optics Letters, OSA, Optical Society of America, Washington, DC, US, vol. 22, No. 6, Mar. 15, 1997, pp. 378-380 SP000690331 ISSN:0146-9592.
Gapontsev V P. et al: “25 KW Peak Power, Wide-Tunable-Repetition-Rate and Pulse Duration Eye-Safe Mopfa Laser” Cleo '96. Conference on Lasers and Electro-Optics. Anaheim, Jun. 2-7, 1996; [Conference on Lasers and Electro-Optics. (CLEO)], New York, IEEE, US, Jan. 1, 1996, p. 209/210, XP001150069 ISBN: 978-0/7803-3183-9.

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

High power optical apparatus employing large-mode-area,... does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with High power optical apparatus employing large-mode-area,..., we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and High power optical apparatus employing large-mode-area,... will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-2728992

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.