Electromechanically reconfigurable optical nano-kirigami

The authors present on-chip and electromechanically reconfigurable nanokirigami with optical functionalities. 3D deformations are achieved via attractive electrostatic forces between a gold nanostructure layer and silicon substrate, resulting in optical reconfigurations with high modulation contrast...

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Autores principales: Shanshan Chen, Zhiguang Liu, Huifeng Du, Chengchun Tang, Chang-Yin Ji, Baogang Quan, Ruhao Pan, Lechen Yang, Xinhao Li, Changzhi Gu, Xiangdong Zhang, Yugui Yao, Junjie Li, Nicholas X. Fang, Jiafang Li
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/242a7f824b2f4a428e7c8ed42e47c801
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spelling oai:doaj.org-article:242a7f824b2f4a428e7c8ed42e47c8012021-12-02T15:52:50ZElectromechanically reconfigurable optical nano-kirigami10.1038/s41467-021-21565-x2041-1723https://doaj.org/article/242a7f824b2f4a428e7c8ed42e47c8012021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21565-xhttps://doaj.org/toc/2041-1723The authors present on-chip and electromechanically reconfigurable nanokirigami with optical functionalities. 3D deformations are achieved via attractive electrostatic forces between a gold nanostructure layer and silicon substrate, resulting in optical reconfigurations with high modulation contrast and small unit size.Shanshan ChenZhiguang LiuHuifeng DuChengchun TangChang-Yin JiBaogang QuanRuhao PanLechen YangXinhao LiChangzhi GuXiangdong ZhangYugui YaoJunjie LiNicholas X. FangJiafang LiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shanshan Chen
Zhiguang Liu
Huifeng Du
Chengchun Tang
Chang-Yin Ji
Baogang Quan
Ruhao Pan
Lechen Yang
Xinhao Li
Changzhi Gu
Xiangdong Zhang
Yugui Yao
Junjie Li
Nicholas X. Fang
Jiafang Li
Electromechanically reconfigurable optical nano-kirigami
description The authors present on-chip and electromechanically reconfigurable nanokirigami with optical functionalities. 3D deformations are achieved via attractive electrostatic forces between a gold nanostructure layer and silicon substrate, resulting in optical reconfigurations with high modulation contrast and small unit size.
format article
author Shanshan Chen
Zhiguang Liu
Huifeng Du
Chengchun Tang
Chang-Yin Ji
Baogang Quan
Ruhao Pan
Lechen Yang
Xinhao Li
Changzhi Gu
Xiangdong Zhang
Yugui Yao
Junjie Li
Nicholas X. Fang
Jiafang Li
author_facet Shanshan Chen
Zhiguang Liu
Huifeng Du
Chengchun Tang
Chang-Yin Ji
Baogang Quan
Ruhao Pan
Lechen Yang
Xinhao Li
Changzhi Gu
Xiangdong Zhang
Yugui Yao
Junjie Li
Nicholas X. Fang
Jiafang Li
author_sort Shanshan Chen
title Electromechanically reconfigurable optical nano-kirigami
title_short Electromechanically reconfigurable optical nano-kirigami
title_full Electromechanically reconfigurable optical nano-kirigami
title_fullStr Electromechanically reconfigurable optical nano-kirigami
title_full_unstemmed Electromechanically reconfigurable optical nano-kirigami
title_sort electromechanically reconfigurable optical nano-kirigami
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/242a7f824b2f4a428e7c8ed42e47c801
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AT zhiguangliu electromechanicallyreconfigurableopticalnanokirigami
AT huifengdu electromechanicallyreconfigurableopticalnanokirigami
AT chengchuntang electromechanicallyreconfigurableopticalnanokirigami
AT changyinji electromechanicallyreconfigurableopticalnanokirigami
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AT junjieli electromechanicallyreconfigurableopticalnanokirigami
AT nicholasxfang electromechanicallyreconfigurableopticalnanokirigami
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