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Low-loss 3D-laser-written mid-infrared LiNbO3 depressed-index cladding waveguides for both TE and TM polarizations.

Authors :
Física i Cristal.lografia de Materials
Física i Cristal·lografia de Nanomaterials
Química Física i Inorgànica
Universitat Rovira i Virgili
Aguiló, M. ; Nguyen, H. D. ; Rodenas, A. ; Vázquez de Aldana, J. R. ; Martín, G. ; Martínez, J. ; Pujol, M. C.; Díaz, F.
Física i Cristal.lografia de Materials
Física i Cristal·lografia de Nanomaterials
Química Física i Inorgànica
Universitat Rovira i Virgili
Aguiló, M. ; Nguyen, H. D. ; Rodenas, A. ; Vázquez de Aldana, J. R. ; Martín, G. ; Martínez, J. ; Pujol, M. C.; Díaz, F.
Source :
Optics Express; 10.1364/OE.25.003722
Publication Year :
2017

Abstract

We report mid-infrared LiNbO3 depressed-index microstructured cladding waveguides fabricated by three-dimensional laser writing showing low propagation losses (~1.5 dB/cm) at 3.68 μm wavelength for both the transverse electric and magnetic polarized modes, a feature previously unachieved due to the strong anisotropic properties of this type of laser microstructured waveguides and which is of fundamental importance for many photonic applications. Using a heuristic modeling-testing iteration design approach which takes into account cladding induced stress-optic index changes, the fabricated cladding microstructure provides low-loss single mode operation for the mid-IR for both orthogonal polarizations. The dependence of the localized refractive index changes within the cladding microstructure with post-fabrication thermal annealing processes was also investigated, revealing its complex dependence of the laser induced refractive index changes on laser fabrication conditions and thermal post-processing steps. The waveguide modes properties and their dependence on thermal post-processing were numerically modeled and fitted to the experimental values by systematically varying three fundamental parameters of this type of waveguides: depressed refractive index values at sub-micron laser-written tracks, track size changes, and piezo-optic induced refractive index changes

Details

Database :
OAIster
Journal :
Optics Express; 10.1364/OE.25.003722
Notes :
Anglès, 2693 kb
Publication Type :
Electronic Resource
Accession number :
edsoai.on1084744886
Document Type :
Electronic Resource