Background
Type: Article

Oven segmentation scheme for pulse shape and efficiency improvement in a picosecond second harmonic generation

Journal: Applied Physics B: Lasers and Optics (09462171)Year: September 2021Volume: 127Issue:
DOI:10.1007/s00340-021-07674-xLanguage: English

Abstract

A multi-segment oven scheme is proposed to control the temperature distribution inside a MgO:PPLN crystal to generate a second-harmonic generation (SHG) pulse possessing optimum characteristics. It is found by numerical solving of SHG coupled equations and steady-state heat equation that when the oven is divided into four segments, the most optimal pulse features can be reached. While the temperature of each segment is independently set at a certain value, and the input pump is raised to 103 GW/m2, the lowest distance parameter of about 10 and the highest efficiency of around 85% is entirely expectable, indicating a desirable case whereby keeping the crystal at the phase-matching condition could not be reached. © 2021, The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.


Author Keywords

Other Keywords

CrystalsEfficiencyEquations of stateMagnesiaNonlinear opticsOvensOxide mineralsPhase matchingUltrafast lasersCoupled equationDistance parameterEfficiency improvementHeat equationMulti-segmentOptimal pulsePhase matching conditionsSegmentation schemeHarmonic generation