Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip Sensing

We propose a coupled-tolerant subwavelength photonic racetrack resonator (PRR) on the silicon-on-insulator (SOI) platform, in which a subwavelength grating (SWG) PRR is coupled to a symmetrical SWG bus waveguide. The material equivalent refractive index can be manipulated by the SWG characteristic a...

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Main Authors: Lijun Huang, Hai Yan, La Xiang, Ni Zhou, Dajiang He, Xianwu Mi
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9345679/
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spelling doaj-a69c0b8e586c4564a09621142858bf592021-05-19T23:02:52ZengIEEEIEEE Access2169-35362021-01-019234242343110.1109/ACCESS.2021.30567979345679Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip SensingLijun Huang0https://orcid.org/0000-0002-2433-983XHai Yan1https://orcid.org/0000-0003-2756-7683La Xiang2Ni Zhou3Dajiang He4Xianwu Mi5Key Laboratory of Intelligent Control Technology for Wuling-Mountain Ecological Agriculture in Hunan Province, School of Electrical and Information Engineering, Huaihua University, Huaihua, ChinaDepartment of Electrical and Computer Engineering, Microelectronic Research Center, The University of Texas at Austin, Austin, TX, USAKey Laboratory of Intelligent Control Technology for Wuling-Mountain Ecological Agriculture in Hunan Province, School of Electrical and Information Engineering, Huaihua University, Huaihua, ChinaKey Laboratory of Intelligent Control Technology for Wuling-Mountain Ecological Agriculture in Hunan Province, School of Electrical and Information Engineering, Huaihua University, Huaihua, ChinaKey Laboratory of Intelligent Control Technology for Wuling-Mountain Ecological Agriculture in Hunan Province, School of Electrical and Information Engineering, Huaihua University, Huaihua, ChinaKey Laboratory of Intelligent Control Technology for Wuling-Mountain Ecological Agriculture in Hunan Province, School of Electrical and Information Engineering, Huaihua University, Huaihua, ChinaWe propose a coupled-tolerant subwavelength photonic racetrack resonator (PRR) on the silicon-on-insulator (SOI) platform, in which a subwavelength grating (SWG) PRR is coupled to a symmetrical SWG bus waveguide. The material equivalent refractive index can be manipulated by the SWG characteristic and thus an additional fabrication degree of freedom can be achieved. The resonant characteristics can be improved significantly by controlling the pillar size and increasing the interaction length between SWG racetrack and bus waveguide (RBW). The simulation results show that the PRR has a high-quality factor and large extinction ratio around 1550nm. Two groups of SWG and strip waveguide (SW) PRRs are fabricated. The fabrication tolerance is tested when fabrication error is changed from 0 to 20 nm and the quality factor is more than 7000 in de-ionized water. The testing results show that the tolerance in SWG-PRR has a 2.0-fold improvement than that in the SW-PRR. Then a fabricated SWG-PRR is employed to monitor different concentration glycerol injected on the chip. An optimal quality factor of 9500 around 1550 nm and bulk sensitivity of 412± 0.5 nm/RIU are achieved. Therefore, the structure is a potential candidate for label-free sensing in medical diagnosis and environmental monitoring.https://ieeexplore.ieee.org/document/9345679/Subwavelength structuresgratingsoptical sensing and sensorsintegrated optics devices
collection DOAJ
language English
format Article
sources DOAJ
author Lijun Huang
Hai Yan
La Xiang
Ni Zhou
Dajiang He
Xianwu Mi
spellingShingle Lijun Huang
Hai Yan
La Xiang
Ni Zhou
Dajiang He
Xianwu Mi
Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip Sensing
IEEE Access
Subwavelength structures
gratings
optical sensing and sensors
integrated optics devices
author_facet Lijun Huang
Hai Yan
La Xiang
Ni Zhou
Dajiang He
Xianwu Mi
author_sort Lijun Huang
title Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip Sensing
title_short Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip Sensing
title_full Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip Sensing
title_fullStr Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip Sensing
title_full_unstemmed Subwavelength Racetrack Resonators With Enhanced Critically Coupled Tolerance for On-Chip Sensing
title_sort subwavelength racetrack resonators with enhanced critically coupled tolerance for on-chip sensing
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description We propose a coupled-tolerant subwavelength photonic racetrack resonator (PRR) on the silicon-on-insulator (SOI) platform, in which a subwavelength grating (SWG) PRR is coupled to a symmetrical SWG bus waveguide. The material equivalent refractive index can be manipulated by the SWG characteristic and thus an additional fabrication degree of freedom can be achieved. The resonant characteristics can be improved significantly by controlling the pillar size and increasing the interaction length between SWG racetrack and bus waveguide (RBW). The simulation results show that the PRR has a high-quality factor and large extinction ratio around 1550nm. Two groups of SWG and strip waveguide (SW) PRRs are fabricated. The fabrication tolerance is tested when fabrication error is changed from 0 to 20 nm and the quality factor is more than 7000 in de-ionized water. The testing results show that the tolerance in SWG-PRR has a 2.0-fold improvement than that in the SW-PRR. Then a fabricated SWG-PRR is employed to monitor different concentration glycerol injected on the chip. An optimal quality factor of 9500 around 1550 nm and bulk sensitivity of 412± 0.5 nm/RIU are achieved. Therefore, the structure is a potential candidate for label-free sensing in medical diagnosis and environmental monitoring.
topic Subwavelength structures
gratings
optical sensing and sensors
integrated optics devices
url https://ieeexplore.ieee.org/document/9345679/
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