Mass Producible Low-Loss Broadband Optical Waveguides in Eagle2000 by Femtosecond Laser Writing

dc.contributor.author Vítor Oliveira Amorim en
dc.contributor.author Carlos Duarte Viveiros en
dc.contributor.author João Miguel Maia en
dc.contributor.author Paulo Vicente Marques en
dc.contributor.other 4287 en
dc.contributor.other 5872 en
dc.contributor.other 6407 en
dc.contributor.other 6596 en
dc.date.accessioned 2023-05-05T14:11:46Z
dc.date.available 2023-05-05T14:11:46Z
dc.date.issued 2019 en
dc.description.abstract Optical waveguides were fabricated in alkaline earth boro-aluminosilicate glass, by femtosecond laser direct writing, with varying pulse energy and scan velocity. A spectral characterization, from 500 nm to 1700 nm, was made in order to determine their losses and understand its dependence on the processing parameters. Three major loss mechanisms were identified. At longer wavelengths, loss is mainly due to weak coupling. On the other hand, the behavior at shorter wavelengths is governed by propagation loss due to Rayleigh scattering, which was shown to be practically eliminated (& x003C; 0.05 dB $\cdot$ cm $<^>{-1} {\cdot }\,\,\mu \text{m}<^>{4}$ ) at higher scan velocities. Bulk absorption was also found to have an influence in the propagation losses at higher wavelengths. The combination of intermediate pulse energies (between 125-250 nJ) and high scan velocities (above 6 cm/s) allowed the fabrication of optical waveguides offering low losses across the entire range of wavelengths tested, facilitating applications that require larger wavelength working bands. Furthermore, since optimal fabrication conditions are achieved at higher scanning velocities, mass production with reduced fabrication times can be achieved. en
dc.identifier P-00R-53R en
dc.identifier.uri http://dx.doi.org/10.1109/lpt.2019.2942104 en
dc.identifier.uri https://repositorio.inesctec.pt/handle/123456789/13861
dc.language eng en
dc.rights info:eu-repo/semantics/openAccess en
dc.title Mass Producible Low-Loss Broadband Optical Waveguides in Eagle2000 by Femtosecond Laser Writing en
dc.type en
dc.type Publication en
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