Temperature-dependent second harmonic generation process based on an MgO-doped periodically poled lithium niobate waveguide
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Reference17 articles.
1. Picosecond-pulse wavelength conversion based on cascaded second-harmonic generation-difference frequency generation in a periodically poled lithium niobate waveguide
2. Flexible all-optical wavelength conversions of 1.57-ps pulses exploiting cascaded sum- and difference frequency generation (cSFG/DFG) in a PPLN waveguide
3. All-optical wavelength conversion and tuning by the cascaded sum- and difference frequency generation (cSFG/DFG) in a temperature gradient controlled Ti:PPLN channel waveguide
4. High sensitivity waveform measurement with optical sampling using quasi-phasematched mixing in LiNbO3 waveguide
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1. Ultrabroadband second-harmonic generation based on a dispersion-engineered lithium niobate on insulator waveguide;Journal of the Optical Society of America B;2022-11-29
2. Low-noise Phase-sensitive Parametric Amplifiers Based on Integrated Silicon-Nitride-Waveguides for Optical Signal Processing;Journal of Lightwave Technology;2021
3. Temperature-insensitive frequency conversion achieved by phase-matching outside principal planes and thermally induced phase-mismatch compensation;Optical Engineering;2018-11-21
4. The effect of an optical pump on the absorption coefficient of magnesium-doped near-stoichiometric lithium niobate in terahertz range;Chinese Physics B;2013-10
5. Effects of swift argon-ion irradiation on the proton-exchanged LiNbO3crystal;Chinese Physics B;2012-05
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