This Letter, to the best of our knowledge, reports mid-infrared fiber lasing beyond 5 µm at room temperature for the first time, Ce3+-doped, chalcogenide glass, step index fiber employed in-band pumping with a 4.15 µm quantum cascade laser. The lasing fiber is was 64 mm long, with a calculated numerical aperture of 0.48 at the lasing wavelengths. The core glass was Ge15As21Ga1Se63 atomic % (at. %), doped with 500 parts-per-million-by-weight Ce, with a 9 µm core diameter. The cladding glass was Ge21Sb10Se69 at. % with a 190 µm outer diameter. As pump power increases continuous wave lasing corresponding to the 2F7/2→2F5/2, transition in the Ce3+ ion occurs at 5.14 µm, 5.17 µm, and 5.28 µm
This letter illustrates the design of a novel medium infrared (Mid-IR) laser based on a photonic cry...
This letter illustrates the design of a novel medium infrared (Mid-IR) laser based on a photonic cry...
We present a study of chalcogenide glass fiber lasers doped withDy3+, Pr3+ or Tb3+ that would operat...
We report mid-infrared fiber lasing for the first time above 5 µm in a room temperature, Ce 3+ doped...
We report mid-infrared fiber lasing for the first time above 5 µm in a room temperature, Ce 3+ doped...
1000 ppmw Sm3+-doped Ge19.4Sb9.7Se67.9Ga3 atomic % chalcogenide bulk glass and unstructured fiber ar...
We provide measurements to support our earlier report of continuous wave fiber lasing in a small cor...
We review here our recent work in achieving mid-infrared (MIR) fibre lasing beyond 5 µm wavelength i...
© 2015 Optical Society of America. Rare earth (RE)-ion doped chalcogenide glasses are attractive for...
We present a study of mid-infrared photoluminescence in the wavelength range 3.5–5.5lm emitted from ...
We provide measurements to support our earlier report of continuous wave fiber lasing in a small cor...
This Project is aimed at developing rare earth ion doped chalcogenide glasses targeting mid-infrared...
Selenide-chalcogenide glass, small-core, step-index fiber (SIF), core-doped with Pr3+: 9.51 × 1024 i...
Selenide-chalcogenide glass, small-core, step-index fiber (SIF), core-doped with Pr3+: 9.51 × 1024 i...
Kerr index and dispersion parameter of a small core chalcogenide photonic crystal fiber are estimate...
This letter illustrates the design of a novel medium infrared (Mid-IR) laser based on a photonic cry...
This letter illustrates the design of a novel medium infrared (Mid-IR) laser based on a photonic cry...
We present a study of chalcogenide glass fiber lasers doped withDy3+, Pr3+ or Tb3+ that would operat...
We report mid-infrared fiber lasing for the first time above 5 µm in a room temperature, Ce 3+ doped...
We report mid-infrared fiber lasing for the first time above 5 µm in a room temperature, Ce 3+ doped...
1000 ppmw Sm3+-doped Ge19.4Sb9.7Se67.9Ga3 atomic % chalcogenide bulk glass and unstructured fiber ar...
We provide measurements to support our earlier report of continuous wave fiber lasing in a small cor...
We review here our recent work in achieving mid-infrared (MIR) fibre lasing beyond 5 µm wavelength i...
© 2015 Optical Society of America. Rare earth (RE)-ion doped chalcogenide glasses are attractive for...
We present a study of mid-infrared photoluminescence in the wavelength range 3.5–5.5lm emitted from ...
We provide measurements to support our earlier report of continuous wave fiber lasing in a small cor...
This Project is aimed at developing rare earth ion doped chalcogenide glasses targeting mid-infrared...
Selenide-chalcogenide glass, small-core, step-index fiber (SIF), core-doped with Pr3+: 9.51 × 1024 i...
Selenide-chalcogenide glass, small-core, step-index fiber (SIF), core-doped with Pr3+: 9.51 × 1024 i...
Kerr index and dispersion parameter of a small core chalcogenide photonic crystal fiber are estimate...
This letter illustrates the design of a novel medium infrared (Mid-IR) laser based on a photonic cry...
This letter illustrates the design of a novel medium infrared (Mid-IR) laser based on a photonic cry...
We present a study of chalcogenide glass fiber lasers doped withDy3+, Pr3+ or Tb3+ that would operat...