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Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation

Detailed studies of the luminescent properties of the Si-based 2D photonic crystal (PhC) slabs with air holes of various depths are reported. Ge self-assembled quantum dots served as an internal light source. It was obtained that changing the air hole depth is a powerful tool which allows tuning of...

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Autores principales: Peretokin, Artem V., Yurasov, Dmitry V., Stepikhova, Margarita V., Shaleev, Mikhail V., Yablonskiy, Artem N., Shengurov, Dmitry V., Dyakov, Sergey A., Rodyakina, Ekaterina E., Smagina, Zhanna V., Novikov, Alexey V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10224023/
https://www.ncbi.nlm.nih.gov/pubmed/37242094
http://dx.doi.org/10.3390/nano13101678
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author Peretokin, Artem V.
Yurasov, Dmitry V.
Stepikhova, Margarita V.
Shaleev, Mikhail V.
Yablonskiy, Artem N.
Shengurov, Dmitry V.
Dyakov, Sergey A.
Rodyakina, Ekaterina E.
Smagina, Zhanna V.
Novikov, Alexey V.
author_facet Peretokin, Artem V.
Yurasov, Dmitry V.
Stepikhova, Margarita V.
Shaleev, Mikhail V.
Yablonskiy, Artem N.
Shengurov, Dmitry V.
Dyakov, Sergey A.
Rodyakina, Ekaterina E.
Smagina, Zhanna V.
Novikov, Alexey V.
author_sort Peretokin, Artem V.
collection PubMed
description Detailed studies of the luminescent properties of the Si-based 2D photonic crystal (PhC) slabs with air holes of various depths are reported. Ge self-assembled quantum dots served as an internal light source. It was obtained that changing the air hole depth is a powerful tool which allows tuning of the optical properties of the PhC. It was shown that increasing the depth of the holes in the PhC has complex influences on its overall photoluminescence (PL) response due to the simultaneous influences of counteracting factors. As a result, the maximal increase in the PL signal of more than two orders of magnitude was obtained for some intermediate, but not full, depth of the PhC’s air holes. It was demonstrated that it is possible to engineer the PhC band structure in such a way as to construct specific states, namely bound states in continuum (BIC), with specially designed dispersion curves being relatively flat. In this case, such states manifest themselves as sharp peaks in the PL spectra, and have high Q-factors which are larger than those of radiative modes and other BIC modes without such a flat dispersion characteristic.
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spelling pubmed-102240232023-05-28 Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation Peretokin, Artem V. Yurasov, Dmitry V. Stepikhova, Margarita V. Shaleev, Mikhail V. Yablonskiy, Artem N. Shengurov, Dmitry V. Dyakov, Sergey A. Rodyakina, Ekaterina E. Smagina, Zhanna V. Novikov, Alexey V. Nanomaterials (Basel) Article Detailed studies of the luminescent properties of the Si-based 2D photonic crystal (PhC) slabs with air holes of various depths are reported. Ge self-assembled quantum dots served as an internal light source. It was obtained that changing the air hole depth is a powerful tool which allows tuning of the optical properties of the PhC. It was shown that increasing the depth of the holes in the PhC has complex influences on its overall photoluminescence (PL) response due to the simultaneous influences of counteracting factors. As a result, the maximal increase in the PL signal of more than two orders of magnitude was obtained for some intermediate, but not full, depth of the PhC’s air holes. It was demonstrated that it is possible to engineer the PhC band structure in such a way as to construct specific states, namely bound states in continuum (BIC), with specially designed dispersion curves being relatively flat. In this case, such states manifest themselves as sharp peaks in the PL spectra, and have high Q-factors which are larger than those of radiative modes and other BIC modes without such a flat dispersion characteristic. MDPI 2023-05-19 /pmc/articles/PMC10224023/ /pubmed/37242094 http://dx.doi.org/10.3390/nano13101678 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Peretokin, Artem V.
Yurasov, Dmitry V.
Stepikhova, Margarita V.
Shaleev, Mikhail V.
Yablonskiy, Artem N.
Shengurov, Dmitry V.
Dyakov, Sergey A.
Rodyakina, Ekaterina E.
Smagina, Zhanna V.
Novikov, Alexey V.
Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation
title Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation
title_full Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation
title_fullStr Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation
title_full_unstemmed Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation
title_short Tuning the Luminescence Response of an Air-Hole Photonic Crystal Slab Using Etching Depth Variation
title_sort tuning the luminescence response of an air-hole photonic crystal slab using etching depth variation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10224023/
https://www.ncbi.nlm.nih.gov/pubmed/37242094
http://dx.doi.org/10.3390/nano13101678
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