Logo image
Optical Bistability in Nanosilicon with Record Low Q-Factor
期刊文章   同儕審查

Optical Bistability in Nanosilicon with Record Low Q-Factor

Kentaro Nishida, Po-Hsueh Tseng, Yu-Chieh Chen, Pang-Han Wu, Chi-Yin Yang, Jhen-Hong Yang, Wei-Ruei Chen, Olesiya Pashina, Mihail I. Petrov, Kuo-Ping Chen, …
Nano Letters, 卷.23(24), 頁碼.11727-11733
12/2023
PMID: 38014963

摘要

Mie resonance nanophotonics optical nonlinearity photothermal effect silicon nanostructure Bioengineering Chemistry (all) Materials Science (all) Condensed Matter Physics Mechanical Engineering
We demonstrated optical bistability in an amorphous silicon Mie resonator with a size of ∼100 nm and Q-factor as low as ∼4 by utilizing photothermal and thermo-optical effects. We not only experimentally confirmed the steep intensity transition and the hysteresis in the scattering response from silicon nanocuboids but also established a physical model to numerically explain the underlying mechanism based on temperature-dependent competition between photothermal heating and heat dissipation. The transition between the bistable states offered particularly steep superlinearity of scattering intensity, reaching an effective nonlinearity order of ∼100th power over excitation intensity, leading to the potential of advanced optical switching devices and super-resolution microscopy.

相關連結

指標

1 檢視次數

詳細資料

Logo image