Claims
- 1. In a light guiding fiber consisting of a core portion and a cladding portion, the improvement comprising said core portion being composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O, and said cladding portion being composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeC.sub.2 and up to 15% Tl.sub.2 O such that said cladding and core portions are sufficiently dissimilar in composition to achieve a desired difference in refractive index therebetween.
- 2. A light guiding fiber according to claim 1 wherein said cladding and core portions comprise a glass consisting essentially of 43-46% PbO, 35-43% Bi.sub.2 O.sub.3, 11-13% Ga.sub.2 O.sub.3, and up to 8% total of at least one members of the group in the indicated proportion consisting of 0.5-3% SiO.sub.2 and/or GeO.sub.2 and 4-8% Tl.sub.2 O.
- 3. In a nonlinear mode coupling device comprising a multi-core coupler wherein the coupling between at least two modes of a waveguide structure is altered by nonlinear interaction, the improvement comprising a waveguide structure consisting of a core portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% T120, and a cladding portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O such that said cladding and core portions are sufficiently dissimilar in composition to achieve a desired difference in refractive index therebetween.
- 4. In a nonlinear mode coupling device comprising a single core device wherein the coupling between at least two modes of a waveguide structure is altered by nonlinear interaction, the improvement comprising a waveguide structure consisting of a core portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% T120, and a cladding portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub. 2 and up to 15% Tl.sub.2 O such that said cladding and core portions are sufficiently dissimilar in composition to achieve a desired difference in refractive index therebetween.
- 5. In a nonlinear interference device of the guided wave type wherein the phases of at least two direct and/or reflected light beams are altered by utilizing variations in the optical path length resulting from third order susceptibility, the improvement comprising a waveguide structure consisting of a core portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O, and a cladding portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O such that said cladding and core portions are sufficiently dissimilar in composition to achieve a desired difference in refractive index therebetween.
- 6. In a nonlinear interference device of the bulk optics type employing a nonlinearly active optical element wherein the phases of at least two direct and/or reflected light beams are altered by utilizing variations in the optical path length resulting from third order susceptibility, the improvement comprising a nonlinearly active optical element composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O.
- 7. In a Raman or Brillouin amplifier wherein a signal beam is combined with a pump beam and is amplified by the pump beam utilizing stimulated Raman or Brillouin scattering, said amplifier having as its active optical medium a waveguide, the improvement comprising a waveguide consisting of a core portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O, and a cladding portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O such that said cladding and core portions are sufficiently dissimilar in composition to achieve a desired difference in refractive index therebetween.
- 8. In an optical phase conjugator, wherein three optical waves interact through third order susceptibility to form a fourth, phase conjugate wave, said optical phase conjugator being of the guided wave type, the improvement comprising a waveguide structure consisting of a core portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O, and a cladding portion composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O such that said cladding and core portions are sufficiently dissimilar in composition to achieve a desired difference in refractive index therebetween.
- 9. In an optical phase conjugator, wherein three optical waves interact through third order susceptibility to form a fourth, phase conjugate wave, said optical phase conjugator being of the bulk optics type employing a nonlinearly active optical element, the improvement comprising a nonlinearly active optical element composed of a glass consisting essentially, expressed in terms of weight percent on the oxide basis, of 42-48% PbO, 33-44% Bi.sub.2 O.sub.3, 10-15% Ga.sub.2 O.sub.3, and up to 15% total of at least one member selected from the group in the indicated proportion consisting of up to 5% SiO.sub.2 and/or GeO.sub.2 and up to 15% Tl.sub.2 O.
RELATED APPLICATION
This is a division of application Ser. No. 07/618,938, filed Nov. 28, 1990, now U.S. Pat. No. 5,093,287.
US Referenced Citations (11)
Divisions (1)
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Number |
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618938 |
Nov 1990 |
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