Abstract – Publication

Mode cleaning in graphene oxide-doped polymeric whispering gallery mode microresonators.
TOMAZIO, Nathália Beretta; PAULA, Kelly Tasso de; HENRIQUE, Franciele Renata; ANDRADE, Marcelo Barbosa de; ROSELLÓ-MECHÓ, Xavier; DELGADO-PINAR, Martina; ANDRÉS, Miguel V.; MENDONÇA, Cleber Renato.
Abstract: The strategy to incorporate graphene oxide (GO) in a composite material offers significant opportunities to realize compact photonic devices, such as saturable absorbers and polarization selective devices. However, the processing of GO-based composites by direct laser writing, which would afford vast patterning and material flexibility in a single step process, has been little addressed. In this work, we investigated the mechanisms underlying a mode cleaning effect in polymeric whispering gallery mode microresonators containing GO, aiming at the development of on-chip integrable photonic devices. We fabricated the microresonators (cavity loaded Q-factor of 20 000 at 1550 nm) in a single step of femtosecond laser writing via two-photon polymerization. By calculating the resonance response to damping mechanisms in the microresonators, we showed that additional losses introduced by GO play a major role in reducing the visibility of a number of resonances up to the point of effectively filtering a set of modes out. Interestingly, although the presence of GO leads to extra losses in the microresonator, it does not change the order of magnitude of the Q-factor of the highest extinction ratio resonances. Overall, this work offers interesting physical insights that can be useful for the design and fabrication of GO-based photonic micro/nanodevices.
Journal of Materials Chemistry C
v. 8, n. 28, p. 9707-9713 - Ano: 2020
Fator de Impacto: 7,059
    @article={003002460,author = {TOMAZIO, Nathália Beretta; PAULA, Kelly Tasso de; HENRIQUE, Franciele Renata; ANDRADE, Marcelo Barbosa de; ROSELLÓ-MECHÓ, Xavier; DELGADO-PINAR, Martina; ANDRÉS, Miguel V.; MENDONÇA, Cleber Renato.},title={Mode cleaning in graphene oxide-doped polymeric whispering gallery mode microresonators},journal={Journal of Materials Chemistry C},note={v. 8, n. 28, p. 9707-9713},year={2020}}

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