Highly tunable refractive index visible-light metasurface from block copolymer self-assembly

Wider control of the refractive index is desired for new optical applications. Here the authors manipulate block copolymer self-assembled nanopatterns via shrinkage in order to control the refractive index. They achieve an index above 3 over 1,000 nm bandwidth.

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Autores principales: Ju Young Kim, Hyowook Kim, Bong Hoon Kim, Taeyong Chang, Joonwon Lim, Hyeong Min Jin, Jeong Ho Mun, Young Joo Choi, Kyungjae Chung, Jonghwa Shin, Shanhui Fan, Sang Ouk Kim
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/eb4f67b9dafd43a68a51902cae174f2d
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spelling oai:doaj.org-article:eb4f67b9dafd43a68a51902cae174f2d2021-12-02T14:40:13ZHighly tunable refractive index visible-light metasurface from block copolymer self-assembly10.1038/ncomms129112041-1723https://doaj.org/article/eb4f67b9dafd43a68a51902cae174f2d2016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12911https://doaj.org/toc/2041-1723Wider control of the refractive index is desired for new optical applications. Here the authors manipulate block copolymer self-assembled nanopatterns via shrinkage in order to control the refractive index. They achieve an index above 3 over 1,000 nm bandwidth.Ju Young KimHyowook KimBong Hoon KimTaeyong ChangJoonwon LimHyeong Min JinJeong Ho MunYoung Joo ChoiKyungjae ChungJonghwa ShinShanhui FanSang Ouk KimNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ju Young Kim
Hyowook Kim
Bong Hoon Kim
Taeyong Chang
Joonwon Lim
Hyeong Min Jin
Jeong Ho Mun
Young Joo Choi
Kyungjae Chung
Jonghwa Shin
Shanhui Fan
Sang Ouk Kim
Highly tunable refractive index visible-light metasurface from block copolymer self-assembly
description Wider control of the refractive index is desired for new optical applications. Here the authors manipulate block copolymer self-assembled nanopatterns via shrinkage in order to control the refractive index. They achieve an index above 3 over 1,000 nm bandwidth.
format article
author Ju Young Kim
Hyowook Kim
Bong Hoon Kim
Taeyong Chang
Joonwon Lim
Hyeong Min Jin
Jeong Ho Mun
Young Joo Choi
Kyungjae Chung
Jonghwa Shin
Shanhui Fan
Sang Ouk Kim
author_facet Ju Young Kim
Hyowook Kim
Bong Hoon Kim
Taeyong Chang
Joonwon Lim
Hyeong Min Jin
Jeong Ho Mun
Young Joo Choi
Kyungjae Chung
Jonghwa Shin
Shanhui Fan
Sang Ouk Kim
author_sort Ju Young Kim
title Highly tunable refractive index visible-light metasurface from block copolymer self-assembly
title_short Highly tunable refractive index visible-light metasurface from block copolymer self-assembly
title_full Highly tunable refractive index visible-light metasurface from block copolymer self-assembly
title_fullStr Highly tunable refractive index visible-light metasurface from block copolymer self-assembly
title_full_unstemmed Highly tunable refractive index visible-light metasurface from block copolymer self-assembly
title_sort highly tunable refractive index visible-light metasurface from block copolymer self-assembly
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/eb4f67b9dafd43a68a51902cae174f2d
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