Waveguide fabrication in KDP crystals with femtosecond laser pulses

Optical waveguides fabricated in potassium dihydrogen phosphate (KDP) by ultrafast laser pulses are demonstrated. Dependent on the incident pulse energy, two different types of refractive index modification have been induced. For moderate laser powers, type I homogeneous waveguides are created. At h...

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Main Authors: Huang, L, Salter, P, Karpiński, M, Smith, B, Payne, F, Booth, M
Format: Journal article
Language:English
Published: Springer Berlin Heidelberg 2015
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author Huang, L
Salter, P
Karpiński, M
Smith, B
Payne, F
Booth, M
author_facet Huang, L
Salter, P
Karpiński, M
Smith, B
Payne, F
Booth, M
author_sort Huang, L
collection OXFORD
description Optical waveguides fabricated in potassium dihydrogen phosphate (KDP) by ultrafast laser pulses are demonstrated. Dependent on the incident pulse energy, two different types of refractive index modification have been induced. For moderate laser powers, type I homogeneous waveguides are created. At higher pulse energies, type II waveguides are formed in the stressed area surrounding regions of laser-induced damage. Double-line and four-line structures are applied to the type II guides to increase mode confinement. Polarization sensitivity and transmission properties of the written waveguides are characterized and discussed. The results indicate that high-quality waveguides can be fabricated in KDP, which has potential for further applications in nonlinear integrated-optics.
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spelling oxford-uuid:064f73b9-8e90-4ca7-b826-1b459e0bfd832022-03-26T09:01:49ZWaveguide fabrication in KDP crystals with femtosecond laser pulsesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:064f73b9-8e90-4ca7-b826-1b459e0bfd83EnglishSymplectic Elements at OxfordSpringer Berlin Heidelberg2015Huang, LSalter, PKarpiński, MSmith, BPayne, FBooth, MOptical waveguides fabricated in potassium dihydrogen phosphate (KDP) by ultrafast laser pulses are demonstrated. Dependent on the incident pulse energy, two different types of refractive index modification have been induced. For moderate laser powers, type I homogeneous waveguides are created. At higher pulse energies, type II waveguides are formed in the stressed area surrounding regions of laser-induced damage. Double-line and four-line structures are applied to the type II guides to increase mode confinement. Polarization sensitivity and transmission properties of the written waveguides are characterized and discussed. The results indicate that high-quality waveguides can be fabricated in KDP, which has potential for further applications in nonlinear integrated-optics.
spellingShingle Huang, L
Salter, P
Karpiński, M
Smith, B
Payne, F
Booth, M
Waveguide fabrication in KDP crystals with femtosecond laser pulses
title Waveguide fabrication in KDP crystals with femtosecond laser pulses
title_full Waveguide fabrication in KDP crystals with femtosecond laser pulses
title_fullStr Waveguide fabrication in KDP crystals with femtosecond laser pulses
title_full_unstemmed Waveguide fabrication in KDP crystals with femtosecond laser pulses
title_short Waveguide fabrication in KDP crystals with femtosecond laser pulses
title_sort waveguide fabrication in kdp crystals with femtosecond laser pulses
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AT salterp waveguidefabricationinkdpcrystalswithfemtosecondlaserpulses
AT karpinskim waveguidefabricationinkdpcrystalswithfemtosecondlaserpulses
AT smithb waveguidefabricationinkdpcrystalswithfemtosecondlaserpulses
AT paynef waveguidefabricationinkdpcrystalswithfemtosecondlaserpulses
AT boothm waveguidefabricationinkdpcrystalswithfemtosecondlaserpulses