Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system

A conversion between the electromagnetically induced transparency (EIT) transmission and Fano transmission is theoretically and experimentally demonstrated in an all-pass microring-Bragg grating (APMR-BG) coupled-resonator system. In this work, the coupling between the two resonators (the microring...

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Main Authors: Zhang, Zecen, Ng, Geok Ing, Hu, Ting, Qiu, Haodong, Guo, Xin, Wang, Wanjun, Rouifed, Mohamed Saïd, Liu, Chongyang, Wang, Hong
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2017
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Online Access:https://hdl.handle.net/10356/85556
http://hdl.handle.net/10220/43766
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-855562020-03-07T13:57:28Z Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system Zhang, Zecen Ng, Geok Ing Hu, Ting Qiu, Haodong Guo, Xin Wang, Wanjun Rouifed, Mohamed Saïd Liu, Chongyang Wang, Hong School of Electrical and Electronic Engineering Nanoelectronics Centre of Excellence Fiber optic devices Coupled resonators A conversion between the electromagnetically induced transparency (EIT) transmission and Fano transmission is theoretically and experimentally demonstrated in an all-pass microring-Bragg grating (APMR-BG) coupled-resonator system. In this work, the coupling between the two resonators (the microring resonator and the Fabry-Perot resonator formed by two Bragg gratings) gives rise to the EIT and Fano transmissions. The resonant status strongly depends on the round-trip attenuation of the microring and the coupling strength. By tuning the coupling strength, the EIT and Fano transmissions can be controlled and converted. The device performance has been theoretically calculated and analyzed with a specially developed numerical model based on the transfer matrix method. The APMR-BG coupled-resonator systems with different gap widths were designed, fabricated, and characterized on a silicon-on-insulator (SOI) platform. The conversion of resonance was experimentally observed and verified. In addition, this on-chip system has the advantage of a small footprint, and the fabrication process is compatible with the planar waveguide fabrication process. NRF (Natl Research Foundation, S’pore) ASTAR (Agency for Sci., Tech. and Research, S’pore) Published version 2017-09-19T07:21:50Z 2019-12-06T16:05:58Z 2017-09-19T07:21:50Z 2019-12-06T16:05:58Z 2017 Journal Article Zhang, Z., Ng, G. I., Hu, T., Qiu, H., Guo, X., Wang, W., et al. (2017). Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system. Applied Physics Letters, 111(8), 081105-. 0003-6951 https://hdl.handle.net/10356/85556 http://hdl.handle.net/10220/43766 10.1063/1.4990486 en Applied Physics Letters © 2017 American Institute of Physics (AIP). This paper was published in Applied Physics Letters and is made available as an electronic reprint (preprint) with permission of American Institute of Physics (AIP). The published version is available at: [http://dx.doi.org/10.1063/1.4990486]. One print or electronic copy may be made for personal use only. Systematic or multiple reproduction, distribution to multiple locations via electronic or other means, duplication of any material in this paper for a fee or for commercial purposes, or modification of the content of the paper is prohibited and is subject to penalties under law. 5 p. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Fiber optic devices
Coupled resonators
spellingShingle Fiber optic devices
Coupled resonators
Zhang, Zecen
Ng, Geok Ing
Hu, Ting
Qiu, Haodong
Guo, Xin
Wang, Wanjun
Rouifed, Mohamed Saïd
Liu, Chongyang
Wang, Hong
Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system
description A conversion between the electromagnetically induced transparency (EIT) transmission and Fano transmission is theoretically and experimentally demonstrated in an all-pass microring-Bragg grating (APMR-BG) coupled-resonator system. In this work, the coupling between the two resonators (the microring resonator and the Fabry-Perot resonator formed by two Bragg gratings) gives rise to the EIT and Fano transmissions. The resonant status strongly depends on the round-trip attenuation of the microring and the coupling strength. By tuning the coupling strength, the EIT and Fano transmissions can be controlled and converted. The device performance has been theoretically calculated and analyzed with a specially developed numerical model based on the transfer matrix method. The APMR-BG coupled-resonator systems with different gap widths were designed, fabricated, and characterized on a silicon-on-insulator (SOI) platform. The conversion of resonance was experimentally observed and verified. In addition, this on-chip system has the advantage of a small footprint, and the fabrication process is compatible with the planar waveguide fabrication process.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Zhang, Zecen
Ng, Geok Ing
Hu, Ting
Qiu, Haodong
Guo, Xin
Wang, Wanjun
Rouifed, Mohamed Saïd
Liu, Chongyang
Wang, Hong
format Article
author Zhang, Zecen
Ng, Geok Ing
Hu, Ting
Qiu, Haodong
Guo, Xin
Wang, Wanjun
Rouifed, Mohamed Saïd
Liu, Chongyang
Wang, Hong
author_sort Zhang, Zecen
title Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system
title_short Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system
title_full Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system
title_fullStr Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system
title_full_unstemmed Conversion between EIT and Fano spectra in a microring-Bragg grating coupled-resonator system
title_sort conversion between eit and fano spectra in a microring-bragg grating coupled-resonator system
publishDate 2017
url https://hdl.handle.net/10356/85556
http://hdl.handle.net/10220/43766
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