High Sensitivity Surface Plasmon Resonance Sensor Based on a Ge-Doped Defect and D-Shaped Microstructured Optical Fiber

被引:11
作者
Cunha, Nilson H. O. [1 ]
Da Silva, Jose P. [1 ]
机构
[1] Univ Fed Rio Grande do Norte, Technol Ctr, Postgrad Program Elect & Comp Engn, BR-59078970 Natal, RN, Brazil
关键词
optical sensors; microstructured optical fiber; surface plasmon resonance; refractive index detection; Ge-doped defect; PHOTONIC CRYSTAL FIBER; BIOSENSOR; DESIGN;
D O I
10.3390/s22093220
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this work a plasmonic sensor with a D-Shaped microstructured optical fiber (MOF) is proposed to detect a wide range of analyte refractive index (RI ; n(a)) by doping the pure silica (SiO2) core with distinct concentrations of Germanium Dioxide (GeO2), causing the presentation of high spectral sensitivity. In this case, the fiber is shaped by polishing a coating of SiO2, on the region that will be doped with GeO2, in the polished area, a thin gold (Au) layer, which constitutes the plasmonic material, is introduced, followed by the analyte, in a way which the gold layer is deposited between the SiO2. and the analyte. The numerical results obtained in the study shows that the sensor can determine efficiently a range of 0.13 refractive index units (RIU), with a limit operation where n a varies from 1.32 to 1.45. Within this application, the sensor has reached an average wavelength sensitivity (WS) of up to 11, 650.63 nm/RIU. With this level of sensitivity, the D-Shaped format and wide range of n(a) detection, the proposed fiber has great potential for sensing applications in several areas.
引用
收藏
页数:17
相关论文
共 36 条
[1]   Dual-Core Photonic Crystal Fiber-Based Plasmonic RI Sensor in the Visible to Near-IR Operating Band [J].
Al Mahfuz, Mohammad ;
Hossain, Md. Anwar ;
Haque, Emranul ;
Hai, Nguyen Hoang ;
Namihira, Yoshinori ;
Ahmed, Feroz .
IEEE SENSORS JOURNAL, 2020, 20 (14) :7692-7700
[2]   Multicore fiber sensor for high-temperature applications up to 1000 °C [J].
Antonio-Lopez, J. Enrique ;
Eznaveh, Zeinab Sanjabi ;
LiKamWa, Patrick ;
Schuelzgen, Axel ;
Amezcua-Correa, Rodrigo .
OPTICS LETTERS, 2014, 39 (15) :4309-4312
[3]   Hydrogel-Core Microstructured Polymer Optical Fibers for Selective Fiber Enhanced Raman Spectroscopy [J].
Azkune, Mikel ;
Ayesta, Igor ;
Ruiz-Rubio, Leire ;
Arrospide, Eneko ;
Vilas-Vilela, Jose Luis ;
Zubia, Joseba .
SENSORS, 2021, 21 (05) :1-11
[4]  
Bruckner V., 2011, ELEMENTS OPTICAL NET, VVolume 1, P194
[5]   Review of surface plasmon resonance and localized surface plasmon resonance sensor? [J].
Chen, Yong ;
Ming, Hai .
Photonic Sensors, 2012, 2 (01) :37-49
[6]  
da Silva J.P., 2013, THESIS UNICAMP CAMPI
[7]   Ge-Doped Defect-Core Microstructured Fiber Design by Genetic Algorithm for Residual Dispersion Compensation [J].
da Silva, Jose Patrocinio ;
Bezerra, Diego S. ;
Rodriguez-Esquerre, Vitaly F. ;
da Fonseca, Iguatemi Eduardo ;
Hernandez-Figueroa, Hugo E. .
IEEE PHOTONICS TECHNOLOGY LETTERS, 2010, 22 (18) :1337-1339
[8]   High Sensitivity of Refractive Index Sensor Based on Analyte-Filled Photonic Crystal Fiber With Surface Plasmon Resonance [J].
Fan, Zhenkai ;
Li, Shuguang ;
Liu, Qiang ;
An, Guowen ;
Chen, Hailiang ;
Li, Jianshe ;
Chao, Dou ;
Li, Hui ;
Zi, Jianchen ;
Tian, Wenlong .
IEEE PHOTONICS JOURNAL, 2015, 7 (03)
[9]   Photonic bandgap fiber-based surface plasmon resonance sensors [J].
Gauvreau, Bertrand ;
Hassani, Alireza ;
Fehri, Majid Fassi ;
Kabashin, Andrei ;
Skorobogatiy, Maksim .
OPTICS EXPRESS, 2007, 15 (18) :11413-11426
[10]   Surface plasmon resonance based biosensor technique: A review [J].
Guo, Xiaowei .
JOURNAL OF BIOPHOTONICS, 2012, 5 (07) :483-501