Optical: systems and elements – Optical amplifier – Optical fiber
Patent
1997-08-29
1999-10-26
Moskowitz, Nelson
Optical: systems and elements
Optical amplifier
Optical fiber
359134, 359342, 372 6, 385142, H01S 317
Patent
active
059738243
ABSTRACT:
Disclosed herein is an amplification method, an optical glass amplifier, a laser based on the amplifier and an amplification optical communication system, all based on a limited length of a single-mode glass fiber made from glass having phonon energy of less than about 350 cm.sup.-1 and doped with dysprosium. The glass includes 0.1-30 mol % germanium, 0-40 mol % arsenic, 0.01-20 mol % X, 0.01-20 mol % Y, and 0.001-2 weight % dysprosium, wherein X is selected from the group consisting of gallium, indium and mixtures thereof selenium; and wherein Y is selected from the group consisting of selenium, and mixtures of selenium and up to 50% of sulfur. The system includes a coupler, a silica-based signal fiber carrying the optical signal that is to be amplified in communication with said coupling means, a pump light source in communication with the coupler, an amplifier in communication with the coupler at one end and another silica-based fiber joined to the amplifier at its other end. The method includes the steps of introducing the optical signal to be amplified into the coupler, introducing a pump optical signal into the coupling means, combining the optical signal and the pump optical signal, introducing the combined optical signal into the amplifier and amplifying the optical signal by exciting the electrons in dysprosium so they emit at about 1.3 .mu.m.
REFERENCES:
patent: 5379149 (1995-01-01), Snitzer et al.
Wei et al, Optics Letters, vol. 19, #12, pp. 904-906; abstract only herew, Jun. 15, 1994.
Aggarwal Ishwar D.
Cole Brian
Harbison Barry
Sanghera Jasbinder
Shaw Brandon
Kap George A.
McDonnell Thomas E.
Moskowitz Nelson
The United States of America as represented by the Secretary of
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