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Quantum-well intermixing for the control of second-order nonlinear effects in AlGaAs multiple-quantum-well waveguides
Authors:Street M W  Whitbread N D  Hutchings D C  Arnold J M  Marsh J H  Aitchison J S  Kennedy G T  Sibbett W
Abstract:We present experimental evidence to demonstrate the feasibility of a promising new quasi-phase-matching technique in AlGaAs multiple-quantum-well waveguides. Non-phase-matched second-harmonic-generation measurements indicate that, for sub-half-bandgap excitation near 1.5 microm , quantum-well intermixing by impurity-free vacancy disordering results in a reduction of the nonlinear susceptibility chi((2))(zxy) (~340 pm/V) by 17%. Relatively low intermixed waveguide losses, and the high spatial resolution of the impurity-free vacancy disordering process, suggest that periodic intermixing along the direction of propagation should lead to useful frequency-conversion efficiencies.
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