The optimal vector phase matching conditions in biaxial crystalline materials determined by extreme surfaces method: the case of orthorhombic crystals

Fuente: arXiv
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Hauptverfasser: Buryy, Oleh, Shulha, Dmytro, Andrushchak, Nazariy, Danylov, Andriy, Sahraoui, Bouchta, Andrushchak, Anatoliy
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Veröffentlicht: 2024
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author Buryy, Oleh
Shulha, Dmytro
Andrushchak, Nazariy
Danylov, Andriy
Sahraoui, Bouchta
Andrushchak, Anatoliy
author_facet Buryy, Oleh
Shulha, Dmytro
Andrushchak, Nazariy
Danylov, Andriy
Sahraoui, Bouchta
Andrushchak, Anatoliy
contents The optimal geometries of vector phase matching are determined for the cases of second harmonic, sum and difference frequency generation in a number of orthorhombic nonlinear optical crystals - KTP, KTA, KB5, KNbO3, LBO, CBO, LRB4. Extreme surface method was used to define wave vectors directions of highest possible generation efficiency. As it is shown, in a significant number of cases vector phase matching ensures higher efficiencies than the scalar one.
format Preprint
id arxiv_https___arxiv_org_abs_2409_19009
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The optimal vector phase matching conditions in biaxial crystalline materials determined by extreme surfaces method: the case of orthorhombic crystals
Buryy, Oleh
Shulha, Dmytro
Andrushchak, Nazariy
Danylov, Andriy
Sahraoui, Bouchta
Andrushchak, Anatoliy
Optics
Materials Science
The optimal geometries of vector phase matching are determined for the cases of second harmonic, sum and difference frequency generation in a number of orthorhombic nonlinear optical crystals - KTP, KTA, KB5, KNbO3, LBO, CBO, LRB4. Extreme surface method was used to define wave vectors directions of highest possible generation efficiency. As it is shown, in a significant number of cases vector phase matching ensures higher efficiencies than the scalar one.
title The optimal vector phase matching conditions in biaxial crystalline materials determined by extreme surfaces method: the case of orthorhombic crystals
topic Optics
Materials Science
url https://arxiv.org/abs/2409.19009