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Title: Microdisk resonator with negative thermal optical coefficient polymer for refractive index sensing with thermal stability
Authors: Ma, T
Yuan, J 
Li, F 
Sun, L
Kang, Z 
Yan, B
Wu, Q
Sang, X
Wang, K
Liu, H
Wang, F
Wu, B
Yu, C
Farrell, G
Issue Date: Apr-2018
Source: IEEE photonics journal, Apr. 2018, v. 10, no. 2, 4900212
Abstract: In this paper, we propose a microdisk resonator with negative thermal optical coefficient (TOC) polymer for refractive index (RI) sensing with thermal stability. The transmission characteristics and sensing performances by using quasi-TE01 and quasi-TM01 modes are simulated by a three-dimensional finite element method. The influences of the TOC, RI, and thickness of the polymer on the sensing performances are also investigated. The simulation results show that the RI sensitivity Sn and temperature sensitivity ST with different polymers are in the ranges of 25.1-26 nm/RIU and 67.3-75.2 pm/K for the quasi-TE01 mode, and 94.5-110.6 nm/RIU and 1.2-51.3 pm/K for the quasi-TM01 mode, respectively. Moreover, figure-of-merit of the temperature sensing for the quasi-TM01 mode is in the range of 2 × 10-4-8 × 10-3, which can find important application in the implementation of the adiabatic devices.
Keywords: Microdisk resonator
Refractive index
Sensors
Temperature
Publisher: Institute of Electrical and Electronics Engineers
Journal: IEEE photonics journal 
EISSN: 1943-0655
DOI: 10.1109/JPHOT.2018.2811758
Rights: © 2017 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.
The following publication T. Ma et al., "Microdisk Resonator With Negative Thermal Optical Coefficient Polymer for Refractive Index Sensing With Thermal Stability," in IEEE Photonics Journal, vol. 10, no. 2, April 2018, Art no. 4900212 is available at https://doi.org/10.1109/JPHOT.2018.2811758.
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