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Titre: Terahertz passive amplification via the temporal Talbot effect in metamaterial-based Bragg fibers
Auteur(s): Pepino, Vinicius Marrara
Mota, Achiles Fontana da
Borges, Ben-Hur V.
Teixeira, Fernando L.
metadata.dc.identifier.orcid: https://orcid.org/0000-0003-2481-1636
https://orcid.org/0000-0003-3438-8894
https://orcid.org/0000-0002-1562-1462
Assunto:: Metamateriais
Fibras óticas
Date de publication: 13-jui-2022
Editeur: Optica Publishing Group
Référence bibliographique: PEPINO, Vinicius M. et al. Terahertz passive amplification via the temporal Talbot effect in metamaterial-based Bragg fibers. Journal of the Optical Society of America B, Washington, v 39, n. 7, p. 1763-1774, jul.2022. DOI 10.1364/JOSAB.454550. Disponível em: https://opg.optica.org/josab/abstract.cfm?uri=josab-39-7-1763. Acesso em: 05 ago. 2022.
Abstract: A fully passive terahertz (THz) pulse amplification device is proposed based on leveraging the temporal Talbot effect (TTE) on a highly dispersive silicon-based metamaterial Bragg fiber. To maximize the TTE passive gain, we introduce and explore three different strategies, denoted as coherent pulse addition (CPA), forward Talbot illuminator (FTAI), and backward Talbot illuminator (BTAI). The BTAI strategy allows additional degrees of freedom for controlling the output pulse shape. Moreover, by using a continuous phase profile, we overcome the hurdle of implementing discrete phase gratings in limited time response phase modulators. We explore different pulse shapes and chirped pulses with CPA, and different gain factors with both BTAI and FTAI. Numerical simulation results show a 5.8 dB gain for a 9.8 cm long fiber with the CPA method, a 9.9 dB gain with FTAI (1.37 cm long), and a 8.8 dB gain with BTAI (1.25 cm long). These results indicate the potential of the approaches presented here, which can be used as a springboard for further developments toward high gain passive amplification THz devices.
DOI: https://doi.org/10.1364/JOSAB.454550
Collection(s) :Artigos publicados em periódicos e afins

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