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- Title
Plasmonic Refractive Index and Temperature Sensor Based on Graphene and LiNbO 3.
- Authors
Irfan, Muhammad; Khan, Yousuf; Rehman, Atiq Ur; Butt, Muhammad A.; Khonina, Svetlana N.; Kazanskiy, Nikolay L.
- Abstract
A high-efficiency dual-purpose plasmonic perfect absorber sensor based on LiNbO3 and graphene layers was investigated in this paper for the refractive index and thermal sensing. The sensor design was kept simple for easy fabrication, comprising a LiNbO3 substrate with a quartz layer, thin layer of graphene, four gold nanorods, and a nanocavity in each unit cell. The nanocavity is located in the middle of the cell to facilitate the penetration of EM energy to the subsurface layers. The proposed sensor design achieved an output response of 99.9% reflection, which was easy to detect without having any specialized conditions for operability. The performance of the device was numerically investigated for the biomedical refractive index range of 1.33 to 1.40, yielding a sensitivity value of 981 nm/RIU with a figure-of-merit of 61.31 RIU−1. By including an additional polydimethylsiloxane polymer functional layer on the top, the device was also tested as a thermal sensor, which yielded a sensitivity level of −0.23 nm/°C.
- Subjects
TEMPERATURE sensors; PLASMONICS; GRAPHENE; UNIT cell; REFRACTIVE index; LITHIUM niobate; PLASTIC optical fibers
- Publication
Sensors (14248220), 2022, Vol 22, Issue 20, pN.PAG
- ISSN
1424-8220
- Publication type
Article
- DOI
10.3390/s22207790