A Highly Accurate Refractive Index Sensor with Two Operation Modes Based on Photonic Crystal Ring Resonator
A 2D hole‐type hexagonal lattice photonic crystal is utilized, herein, to detect the refractive index change of the material infiltrated into the designed circular sensing area which also resembles a ring resonator. The accuracy of the detection process is enhanced considering the simultaneous shift...
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Veröffentlicht in: | Annalen der Physik 2019-07, Vol.531 (7), p.n/a |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A 2D hole‐type hexagonal lattice photonic crystal is utilized, herein, to detect the refractive index change of the material infiltrated into the designed circular sensing area which also resembles a ring resonator. The accuracy of the detection process is enhanced considering the simultaneous shift of the resonance wavelengths and the intensity modulation which occur in two separate spectral regions. The presented structure has the ability to detect liquids, material concentrations in fluids and gases having refractive indices in the range of n = 1–2 with sensitivity and quality factor of 61 nm/RIU and 3000, respectively, for resonance‐wavelength‐shift‐based operation. The detection range of n = 1–1.4 with the sensitivity of S = 0.69 NI/RIU is achieved for the intensity‐based measurement and the results show good linearity in the operating range.
A highly efficient refractive index sensor with two operation modes is presented for the detection of gases, chemical, biomedical, or solution‐based materials. The presented structure eases the infiltration of the exterior material into the sensor, considering circularly shaped ring resonator consisting of merely one air hole as a sensing area. |
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ISSN: | 0003-3804 1521-3889 |
DOI: | 10.1002/andp.201800453 |