silicon nanostructure
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2021 ◽  
pp. 105133
Author(s):  
Weishuai Chen ◽  
Jin Tao ◽  
Hongtao Xu ◽  
Dan Gao ◽  
Jinguang Lv ◽  
...  

2021 ◽  
Vol 155 (20) ◽  
pp. 204202
Author(s):  
Chien-Hsuan Li ◽  
Yu-Lung Tang ◽  
Junichi Takahara ◽  
Shi-Wei Chu

2021 ◽  
Vol 15 (02) ◽  
Author(s):  
Anup M. Upadhyaya ◽  
Maneesh C. Srivastava ◽  
Preeta Sharan ◽  
Sandip Kumar Roy

2021 ◽  
Author(s):  
Yu-Lung Tang ◽  
Chien-Hsuan Li ◽  
Junichi Takahara ◽  
Shi-Wei Chu

2020 ◽  
Vol 11 (1) ◽  
Author(s):  
Yi-Shiou Duh ◽  
Yusuke Nagasaki ◽  
Yu-Lung Tang ◽  
Pang-Han Wu ◽  
Hao-Yu Cheng ◽  
...  

An amendment to this paper has been published and can be accessed via a link at the top of the paper.


2020 ◽  
Vol 11 (1) ◽  
Author(s):  
Yi-Shiou Duh ◽  
Yusuke Nagasaki ◽  
Yu-Lung Tang ◽  
Pang-Han Wu ◽  
Hao-Yu Cheng ◽  
...  

Abstract Silicon photonics have attracted significant interest because of their potential in integrated photonics components and all-dielectric meta-optics elements. One major challenge is to achieve active control via strong photon–photon interactions, i.e. optical nonlinearity, which is intrinsically weak in silicon. To boost the nonlinear response, practical applications rely on resonant structures such as microring resonators or photonic crystals. Nevertheless, their typical footprints are larger than 10 μm. Here, we show that 100 nm silicon nano-resonators exhibit a giant photothermal nonlinearity, yielding 90% reversible and repeatable modulation from linear scattering response at low excitation intensities. The equivalent nonlinear index is five-orders larger compared with bulk, based on Mie resonance enhanced absorption and high-efficiency heating in thermally isolated nanostructures. Furthermore, the nanoscale thermal relaxation time reaches nanosecond. This large and fast nonlinearity leads to potential applications for GHz all-optical control at the nanoscale and super-resolution imaging of silicon.


Solar Energy ◽  
2020 ◽  
Vol 204 ◽  
pp. 577-584
Author(s):  
Xinpu Li ◽  
Ke Tao ◽  
Huayun Ge ◽  
Danni Zhang ◽  
Zhibo Gao ◽  
...  

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