Giant photothermal nonlinearity in a single silicon nanostructure

Resonant structures are a promising method to enhance the nonlinear response of Si, however they are typically larger than 10 μm. Here, the authors present Si nano-resonators that amplify photothermal nonlinearity, resulting in reversible and repeatable modulation.

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Autores principales: Yi-Shiou Duh, Yusuke Nagasaki, Yu-Lung Tang, Pang-Han Wu, Hao-Yu Cheng, Te-Hsin Yen, Hou-Xian Ding, Kentaro Nishida, Ikuto Hotta, Jhen-Hong Yang, Yu-Ping Lo, Kuo-Ping Chen, Katsumasa Fujita, Chih-Wei Chang, Kung-Hsuan Lin, Junichi Takahara, Shi-Wei Chu
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/c719231aac9a4c39a8eab7218b8410d6
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spelling oai:doaj.org-article:c719231aac9a4c39a8eab7218b8410d62021-12-02T18:51:02ZGiant photothermal nonlinearity in a single silicon nanostructure10.1038/s41467-020-17846-62041-1723https://doaj.org/article/c719231aac9a4c39a8eab7218b8410d62020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17846-6https://doaj.org/toc/2041-1723Resonant structures are a promising method to enhance the nonlinear response of Si, however they are typically larger than 10 μm. Here, the authors present Si nano-resonators that amplify photothermal nonlinearity, resulting in reversible and repeatable modulation.Yi-Shiou DuhYusuke NagasakiYu-Lung TangPang-Han WuHao-Yu ChengTe-Hsin YenHou-Xian DingKentaro NishidaIkuto HottaJhen-Hong YangYu-Ping LoKuo-Ping ChenKatsumasa FujitaChih-Wei ChangKung-Hsuan LinJunichi TakaharaShi-Wei ChuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yi-Shiou Duh
Yusuke Nagasaki
Yu-Lung Tang
Pang-Han Wu
Hao-Yu Cheng
Te-Hsin Yen
Hou-Xian Ding
Kentaro Nishida
Ikuto Hotta
Jhen-Hong Yang
Yu-Ping Lo
Kuo-Ping Chen
Katsumasa Fujita
Chih-Wei Chang
Kung-Hsuan Lin
Junichi Takahara
Shi-Wei Chu
Giant photothermal nonlinearity in a single silicon nanostructure
description Resonant structures are a promising method to enhance the nonlinear response of Si, however they are typically larger than 10 μm. Here, the authors present Si nano-resonators that amplify photothermal nonlinearity, resulting in reversible and repeatable modulation.
format article
author Yi-Shiou Duh
Yusuke Nagasaki
Yu-Lung Tang
Pang-Han Wu
Hao-Yu Cheng
Te-Hsin Yen
Hou-Xian Ding
Kentaro Nishida
Ikuto Hotta
Jhen-Hong Yang
Yu-Ping Lo
Kuo-Ping Chen
Katsumasa Fujita
Chih-Wei Chang
Kung-Hsuan Lin
Junichi Takahara
Shi-Wei Chu
author_facet Yi-Shiou Duh
Yusuke Nagasaki
Yu-Lung Tang
Pang-Han Wu
Hao-Yu Cheng
Te-Hsin Yen
Hou-Xian Ding
Kentaro Nishida
Ikuto Hotta
Jhen-Hong Yang
Yu-Ping Lo
Kuo-Ping Chen
Katsumasa Fujita
Chih-Wei Chang
Kung-Hsuan Lin
Junichi Takahara
Shi-Wei Chu
author_sort Yi-Shiou Duh
title Giant photothermal nonlinearity in a single silicon nanostructure
title_short Giant photothermal nonlinearity in a single silicon nanostructure
title_full Giant photothermal nonlinearity in a single silicon nanostructure
title_fullStr Giant photothermal nonlinearity in a single silicon nanostructure
title_full_unstemmed Giant photothermal nonlinearity in a single silicon nanostructure
title_sort giant photothermal nonlinearity in a single silicon nanostructure
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/c719231aac9a4c39a8eab7218b8410d6
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