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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Multicore bi-layer gold-coated SPR-based sensor for simultaneous measurements of CFC and HCFC
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Multicore bi-layer gold-coated SPR-based sensor for simultaneous measurements of CFC and HCFC

机译:用于同时测量CFC和HCFC的多核双层金涂层镀金的SPR传感器

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摘要

Global warming is an alarming issue in our daily life. As we know that CFCs and HCFCs have a great impact on ozone depletion and global warming process. So, there must be a cheaper way to detect CFCs and HCFCs from refrigerant products like refrigerator, aerosols, air-conditioner, etc. So, for the very first time, this paper proposes a novel highly sensitive dual-core bi-layer gold-coated surface plasmon resonance (DB-SPR)-based photonic crystal fiber (PCF) for sensing CFCs and HCFCs in the field of chemical and biosensing. The analysis is assumed at 20 degrees C (293 K) for the concentration level of CFCs and HCFCs ranging between 20% and 80%. The entire numerical evaluation process is done by using finite element method (FEM) with a full vectorial software named COMSOL V-5.1 by examining the number of mesh elements of 228,120 which has better flexibility in the fabrication process. The proposed model can prove itself better than any other models by the justification of the major optical parameters, such as birefringence (B-i), coupling length (L-c), confinement loss (alpha(c)), transmittance (T-x), transmittance variance (T-v), power fraction (P-f), amplitude sensitivity (S-A), wavelength sensitivity (S-w), figure of merit (FOM), resolution (Rl), resonance (R-2), etc. which respectively corresponds to their maximum performance profiles of 0.038, 40 mu m, 1140 dB/cm, -180 dB, 410 dB/RIU, 51%, -3200 RIU-1 30450.43 nm/RIU, 1300, 1:25 x 10(-5) 0.98712. So, it is evident that proposed SPR PCF can be a tough competitor in the field of biosensing and chemical sensing as well as gas sensing.
机译:全球变暖是我们日常生活中的令人震惊的问题。正如我们所知,氟氯化碳和氟氯烃对臭氧消耗和全球变暖过程产生了很大影响。因此,必须有更便宜的方式来检测冰箱,气溶胶,空调等的制冷剂产品中的氟氯化合物和氟氯化合物,因此,这篇论文提出了一种新型高度敏感的双核双层金 - 涂覆表面等离子体共振(DB-SPR)基础的光子晶体纤维(PCF),用于在化学和生物传感器领域中感测CFC和HCFC。分析以20摄氏度(293k)假设,用于CFC的浓度水平,HCFC在20%和80%之间。通过使用具有名为COMSOL V-5.1的全矢量图软件的有限元方法(FEM)来完成整个数值评估过程通过检查制造过程中具有更好的灵活性的网格元素的数量。所提出的模型可以通过诸如双折射率(BI),耦合长度(LC),限制损失(α(C)),透射率(TX),透射率方差(透射率方差(电视),功率分数(PF),幅度灵敏度(SA),波长灵敏度(SW),优点(FOM),分辨率(RL),谐振(R-2)等分别对应于其最大性能配置文件0.038,40μm,1140 db / cm,-180 dB,410 dB / Riu,51%,-3200 riu-1 30450.43 nm / Riu,1300,1:25 x 10(-5)0.98712。因此,显然,所提出的SPR PCF可以是生物传感和化学感测领域的艰难竞争对手以及气体传感。

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