Era:aYb-Doped Oxyfluoride Silicate Glass Waveguide Laser Fabricated Using Ultrafast Laser Inscription

We demonstrate laser action from a waveguide fabricated in an Er:Yb-doped silicate glass using femtosecond laser inscription. Waveguides were fabricated using a diode-pumped Yb:glass oscillator at a 600-kHz repetition rate. The multiscan technique was used to control the waveguide cross section. Tex...

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Published in:IEEE photonics technology letters Vol. 20; no. 2
Main Authors: Psaila, N D, Thomson, R R, Bookey, H T, Chiodo, N, Shen, S, Osellame, R, Cerullo, G, Jha, A, Kar, A
Format: Journal Article
Language:English
Published: 01-01-2008
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Abstract We demonstrate laser action from a waveguide fabricated in an Er:Yb-doped silicate glass using femtosecond laser inscription. Waveguides were fabricated using a diode-pumped Yb:glass oscillator at a 600-kHz repetition rate. The multiscan technique was used to control the waveguide cross section. Textbook threshold characteristics are observed for both 980 nm and dual-wavelength excitation.
AbstractList We demonstrate laser action from a waveguide fabricated in an Er:Yb-doped silicate glass using femtosecond laser inscription. Waveguides were fabricated using a diode-pumped Yb:glass oscillator at a 600-kHz repetition rate. The multiscan technique was used to control the waveguide cross section. Textbook threshold characteristics are observed for both 980 nm and dual-wavelength excitation.
Author Osellame, R
Jha, A
Kar, A
Bookey, H T
Thomson, R R
Chiodo, N
Shen, S
Cerullo, G
Psaila, N D
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  fullname: Kar, A
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Snippet We demonstrate laser action from a waveguide fabricated in an Er:Yb-doped silicate glass using femtosecond laser inscription. Waveguides were fabricated using...
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Femtosecond
Glass
Lasers
Oscillators
Silicates
Textbooks
Waveguides
Title Era:aYb-Doped Oxyfluoride Silicate Glass Waveguide Laser Fabricated Using Ultrafast Laser Inscription
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