SiO2-ZrO2:Er3+ planar waveguides are promising materials in integrated optics systems as active Er3+ ions have high photoluminescence at 1550 nm which is at the low-loss region of silica fibers. In scaling down the device dimensions from the long fiber length to small device dimensions of photonic integrated circuit, the Er3+ concentration has to be increased to achieve the same optical gain. However, excess doping of Er3+ ions would reduce the amplification efficiency due to pair-induced quenching (PIQ). In this paper, we report a study on 70SiO2-30ZrO2 doped with Er3+ and co-doped with Yb3+ as a sensitizing agent in reducing the effect of PIQ. The samples were prepared through sol gel process. Several layers were deposited on cleaned fused silica substrate via dip-coating and each layer was annealed at 900°C. Considerable increase in the emission peak intensities of photoluminescence spectra of the waveguides which were co-doped with Yb 3+ demonstrates the sensitizing effect in reducing PIQ.

Preparation and characterization of SiO2-ZrO2:Er 3+/Yb3+ planar waveguides for optical amplifier

Chiasera A;Ferrari M;
2010

Abstract

SiO2-ZrO2:Er3+ planar waveguides are promising materials in integrated optics systems as active Er3+ ions have high photoluminescence at 1550 nm which is at the low-loss region of silica fibers. In scaling down the device dimensions from the long fiber length to small device dimensions of photonic integrated circuit, the Er3+ concentration has to be increased to achieve the same optical gain. However, excess doping of Er3+ ions would reduce the amplification efficiency due to pair-induced quenching (PIQ). In this paper, we report a study on 70SiO2-30ZrO2 doped with Er3+ and co-doped with Yb3+ as a sensitizing agent in reducing the effect of PIQ. The samples were prepared through sol gel process. Several layers were deposited on cleaned fused silica substrate via dip-coating and each layer was annealed at 900°C. Considerable increase in the emission peak intensities of photoluminescence spectra of the waveguides which were co-doped with Yb 3+ demonstrates the sensitizing effect in reducing PIQ.
2010
Istituto di fotonica e nanotecnologie - IFN
9781424471874
Optical amplifier
Zirconium alloys
Planar waveguides
Erbium
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/6881
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