Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform
Thermally tunable Fano and electromagnetically induced transparency (EIT) resonances are theoretically and experimentally demonstrated based on a Mach-Zehnder interferometer assisted Bragg grating-microring coupled resonant system on silicon-on-insulator (SOI) platform. In this paper, the destructiv...
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sg-ntu-dr.10356-1056882019-12-06T21:55:49Z Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform Littlejohns, Callum George Zhang, Zecen Ng, Geok Ing Hu, Ting Qiu, Haodong Guo, Xin Wang, Wanjun Liu, Chongyang Sia, Jiaxu Zhou, Jin Nedeljkovic, Milos Reed, Graham T. Wang, Hong Mohamed Saïd Rouifed School of Electrical and Electronic Engineering Silicon Technologies, Centre of Excellence Silicon Nanophotonics Integrated Nanophotonic Systems Engineering::Electrical and electronic engineering Thermally tunable Fano and electromagnetically induced transparency (EIT) resonances are theoretically and experimentally demonstrated based on a Mach-Zehnder interferometer assisted Bragg grating-microring coupled resonant system on silicon-on-insulator (SOI) platform. In this paper, the destructive and constructive coupling between the two resonators, the microring resonator and the Fabry-Perot resonator formed by two Bragg gratings, give rise to the Fano and EIT resonances, respectively. The resonance lineshape can be controlled and converted by tuning the optical path length of the MZI arm. The device performance has been theoretically analyzed by using a specially developed numerical model. The coupled resonant system was designed, fabricated, and characterized on a commercial (SOI) platform. The tuning and conversion of the resonance lineshape by thermo-optical effect have been experimentally observed and verified, with good agreement between the experimental data and the simulations. NRF (Natl Research Foundation, S’pore) ASTAR (Agency for Sci., Tech. and Research, S’pore) Published version 2019-08-06T09:05:29Z 2019-12-06T21:55:49Z 2019-08-06T09:05:29Z 2019-12-06T21:55:49Z 2018 Journal Article Zhang, Z., Ng, G. I., Hu, T., Qiu, H., Guo, X., Wang, W., . . . Wang, H. (2018). Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform. IEEE Photonics Journal, 10(3), 6601108-. doi:10.1109/JPHOT.2018.2839621 1943-0655 https://hdl.handle.net/10356/105688 http://hdl.handle.net/10220/49564 http://dx.doi.org/10.1109/JPHOT.2018.2839621 en IEEE Photonics Journal © 2018 IEEE. Translations and content mining are permitted for academic research only. Personal use is also permitted, but republication/redistribution requires IEEE permission. See http://www.ieee.org/publications_standards/publications/rights/index.html for more information. 8 p. application/pdf |
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Silicon Nanophotonics Integrated Nanophotonic Systems Engineering::Electrical and electronic engineering Littlejohns, Callum George Zhang, Zecen Ng, Geok Ing Hu, Ting Qiu, Haodong Guo, Xin Wang, Wanjun Liu, Chongyang Sia, Jiaxu Zhou, Jin Nedeljkovic, Milos Reed, Graham T. Wang, Hong Mohamed Saïd Rouifed Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform |
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Thermally tunable Fano and electromagnetically induced transparency (EIT) resonances are theoretically and experimentally demonstrated based on a Mach-Zehnder interferometer assisted Bragg grating-microring coupled resonant system on silicon-on-insulator (SOI) platform. In this paper, the destructive and constructive coupling between the two resonators, the microring resonator and the Fabry-Perot resonator formed by two Bragg gratings, give rise to the Fano and EIT resonances, respectively. The resonance lineshape can be controlled and converted by tuning the optical path length of the MZI arm. The device performance has been theoretically analyzed by using a specially developed numerical model. The coupled resonant system was designed, fabricated, and characterized on a commercial (SOI) platform. The tuning and conversion of the resonance lineshape by thermo-optical effect have been experimentally observed and verified, with good agreement between the experimental data and the simulations. |
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School of Electrical and Electronic Engineering |
author_facet |
School of Electrical and Electronic Engineering Littlejohns, Callum George Zhang, Zecen Ng, Geok Ing Hu, Ting Qiu, Haodong Guo, Xin Wang, Wanjun Liu, Chongyang Sia, Jiaxu Zhou, Jin Nedeljkovic, Milos Reed, Graham T. Wang, Hong Mohamed Saïd Rouifed |
format |
Article |
author |
Littlejohns, Callum George Zhang, Zecen Ng, Geok Ing Hu, Ting Qiu, Haodong Guo, Xin Wang, Wanjun Liu, Chongyang Sia, Jiaxu Zhou, Jin Nedeljkovic, Milos Reed, Graham T. Wang, Hong Mohamed Saïd Rouifed |
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Littlejohns, Callum George |
title |
Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform |
title_short |
Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform |
title_full |
Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform |
title_fullStr |
Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform |
title_full_unstemmed |
Experimental demonstration of thermally tunable Fano and EIT resonances in coupled resonant system on SOI platform |
title_sort |
experimental demonstration of thermally tunable fano and eit resonances in coupled resonant system on soi platform |
publishDate |
2019 |
url |
https://hdl.handle.net/10356/105688 http://hdl.handle.net/10220/49564 http://dx.doi.org/10.1109/JPHOT.2018.2839621 |
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1681044501539323904 |