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1.
从溶液离子影响表面等离子体共振(SPR)光谱特征的角度,分析讨论了光纤SPR光谱对水溶液离子成分检测的灵敏特征,基于此并应用于以矿化度为代表的水质检测中。研究通过对不同离子状态的电解质溶液(NaCl,KCl,CaCl2,MgCl2,Na2CO3,MgSO4和ZnSO4)和非电解质溶液(蔗糖、丙三醇、葡萄糖)下的光纤SPR光谱分析,得到水环境的杂质离子含量对SPR光谱的影响规律,进而实现了水质矿化度的检测。研究同时给出了光纤SPR光谱法与电导率分析法在八种不同水样的检测对比分析,光纤SPR光谱法拥有高灵敏度、快速响应、抗电磁干扰等优点,对光纤SPR技术在水质检测领域的应用打下良好的基础。  相似文献   

2.
廖文英  范万德  李海鹏  隋佳男  曹学伟 《物理学报》2015,64(6):64213-064213
光纤表面等离子体共振传感器在高灵敏度传感和在线实时监测等领域具有重要意义. 设计了一种六重准晶体结构环形通道光纤表面等离子体共振传感器, 基于有限元法对该传感器的传感特性进行了数值模拟. 研究了光纤各结构参量对传感器特性的影响规律. 研究结果表明: 待测液折射率的有效监测范围为1.25–1.331, 最高灵敏度可达26400 nm·RIU-1, 传感器具有损耗谱杂峰少、探测范围广、灵敏度高、设计灵活性高和光路可弯曲等特点, 在生化检测、公共安全、环境污染监测以及高灵敏度传感等领域具有广泛的应用前景.  相似文献   

3.
镀银空芯光纤表面等离子体共振传感器的研究   总被引:1,自引:0,他引:1  
蒋永翔  刘炳红  朱晓松  石艺尉 《光学学报》2014,34(2):223004-249
提出了一种新型的基于镀银空芯光纤结构的表面等离子体共振(SPR)传感器。建立了光学模型对传感器内的光传播进行分析,在理论上推导出了传输光谱公式。制作了不同银膜厚度的空芯光纤SPR传感器,搭建了实验系统对内芯充入不同折射率的液体介质的传感器传输光谱进行了测量,获得了相应的SPR光谱。通过理论计算和实验测量对传感器的灵敏度特性和测量准确性进行了分析讨论。结果表明该传感器是一种灵敏度较高的、能实时检测待测高折射率液体介质的SPR传感器,它在一定范围内能够很好地弥补传统光纤表面等离子体共振传感器的不足,并且开拓了空芯光纤的一个新的应用领域。  相似文献   

4.
基于表面等离子体共振的微结构光纤传感器具有高灵敏、免标记和实时监控等优点.如今,由于此类传感器广泛应用于食品安全控制、环境检测、生物分子分析物检测等诸多领域而受到大量研究.然而,目前所报道的绝大多数此类传感器只能应用于可见光或近中红外传感.因此,对可应用于中红外传感的表面等离子体共振微结构光纤传感器的研究是一项极具挑战...  相似文献   

5.
基于表面等离子体共振原理的空芯光纤传感器   总被引:2,自引:0,他引:2  
设计了一种基于表面等离子体共振原理,使用空芯光纤作为光波导、外表面镀金属膜的光学材料圆柱体作为探头的新型折射率传感器。通过建立光学模型进行分析,在理论上推导出了这种传感器的传输光谱损耗公式,并针对该传感器在不同的光纤长度、探头材料、检测物质折射率等参数设置下的检测性能进行了分析,获得了各种参数对其性能的影响。由于该传感器可针对不同折射率的检测物质灵活地更换合适探头材料,相对于传统的表面等离子体共振光纤传感器,在易用性和性价比等方面具有更好的应用价值。  相似文献   

6.
偏振控制光强调制型点阵SPR传感器研究   总被引:3,自引:0,他引:3  
介绍了一种偏振控制光强调制型点阵表面等离子体共振(SPR)传感器,分析了入射角度、金膜厚度、起偏器设置、光源波长及数据处理方式对传感器灵敏度和线性范围的影响,并对632.8 nm与740 nm两种光源传感器系统进行了实验测试与分析.结果表明,偏振控制光强调制型点阵SPR传感器可将光经过表面等离子体共振所产生的偏振态变化...  相似文献   

7.
反射式光纤表面等离子体波共振传感器特性研究   总被引:1,自引:1,他引:1  
曾捷  梁大开  曾振武  杜艳 《光学学报》2007,27(3):404-409
研究了一种基于表面等离子体波共振(SPR)光谱分析的折射率检测新方法。研究发现,表面等离子体波共振效应光谱特征的折射率灵敏度会随着液体性质变化而发生改变。根据折射率测量范围不同,分别选择共振波长和共振强度作为检测参量,实现理论折射率分辨力达到10~(-5)数量级以上。在理论分析和实验基础上,设计出一种基于共振光强检测的终端反射式光纤表面等离子体波共振效应传感系统,采用将传感信号和基准光信号的比值作为液体折射率变化的度量值。在1.3325~1.3991的折射率测量范围内,度量值与折射率之间呈现单调递减关系,线性相关系数为0.9983。通过定义耦合系数,还可实现对表面等离子体波共振效应效应强弱和变化趋势的评估。  相似文献   

8.
冯李航  曾捷  梁大开  张为公 《物理学报》2013,62(12):124207-124207
提出了一种契形端面结构的光纤表面等离子体共振(SPR)传感器激励模型. 采用时域有限差分法对契形SPR波导的共振模型进行数值模拟, 通过在光纤出射端抛磨契形角度并进行敏感膜修饰, 制出具有契形端面结构的类Kretschmann微棱镜式光纤SPR传感器, 实现激发SPR的光波调制.结果表明, 在1.3330–1.4215折射率范围内, 制备的契形光纤SPR传感器相对于常规光纤SPR传感器, 其平均灵敏度提高了近1–6倍, 1倍和6倍分别出现在小角度结构(15° 契形) 传感器和大角度结构(60°契形) 传感器, 且仍保持 10-5 等级的分辨率. 该类型结构的传感器具有契形端面激励模式, 设计灵活性高、制备工艺简单、可微量检测样本等优点, 能够很好地适应于不同环境和测量条件的实际生化检测、环境监测需求. 关键词: 光纤传感器 表面等离子体共振 契形端面结构 折射率灵敏度  相似文献   

9.
便携式表面等离子体共振传感器温度特性   总被引:1,自引:1,他引:1  
采用美国德州仪器公司开发的Spreeta系列小型化SPR传感模块,实验研究了环境温度变化对便携式表面等离子体共振传感器工作特性的影响.发现随着温度的升高,共振角度向小角度方向移动,并提出了完整的理论分析模型.该模型讨论了环境温度变化对金属薄膜、棱镜、待测物的物理性质的影响,模拟结果与实验测量结果吻合得很好.  相似文献   

10.
讨论了光纤表面等离子体波传感器的工作原理,并对将其用于监测以甲基橙为代表的环境污水降解过程的可行性进行了探讨。用光纤SPR传感器监测了50 mL初始浓度为30 mg·L-1的甲基橙原溶液在降解过程浓度的变化,对降解过程中光纤SPR传感器的光谱进行了详细的分析;同时采用紫外-分光光度计对降解过程中溶液浓度的变化进行了监测,并对2种方法所测的数据进行了分析对比。结果表明,光纤SPR同常规方法的测量结果一致,随着降解时间的增加,甲基橙溶液的吸光度和浓度逐渐减小,光纤SPR传感器的共振波长逐渐发生蓝移,同初始标定的甲基橙原溶液共振光谱比较,说明甲基橙逐渐被降解,且在2 h内降解率达到73%,说明用光纤SPR传感器监测污水降解过程是完全可行的。研究结果不仅为环境污水降解过程提供了一种新的监测方法,同时促进了我国SPR传感技术与环保监测研究结合,为光纤SPR技术走向实用,并最终实现产业化积累了经验。  相似文献   

11.
A highly sensitive surface plasmon resonance (SPR) based fiber optic sensor with indium oxide (In2O3) layer coated on the core of the optical fiber is presented and theoretically analyzed. The sensitivity of the SPR based fiber optic sensor has been evaluated numerically. It is shown that the proposed SPR based fiber optic sensor with In2O3 layer possesses high sensitivity in the near infrared region of spectrum, which needs attention to many environmental and security applications and offers more accurate and highly reproducible measurements. In addition, the sensitivity of the SPR based fiber optic sensor decreases with the increase in the thickness of In2O3 layer. With sensitivity as high as 4600 nm/RIU, the 170 nm thick In2O3 layer based fiber optic SPR sensor demonstrates better performance.  相似文献   

12.
A theoretical model for surface plasmon resonance (SPR) based tapered fiber optic sensor is proposed with three different taper profiles, namely, linear, parabolic, and exponential-linear. The effect of taper ratio and taper profiles on the sensor’s performance is studied in detail and the design considerations for significantly enhanced sensitivity are reported. The study shows that the exponential-linear taper profile with high taper ratio provides the best performance. The physical reasons behind sensitivity enhancement due to taper ratio and taper profile are given, wherever required.  相似文献   

13.
Finite-difference time domain (FDTD) method was used to investigate the performance of surface plasmon resonance (SPR)-based optical fiber sensors. The results show that the performance of the fiber sensor can be optimized by choosing a proper combination of metal layer thickness of 40–60 nm and residual cladding thickness of 400–500 nm. Furthermore, the roughness effect of the gold surface layering the fiber sensor is significant in rough surfaces when sigma rms is greater than 5 nm or correlation length is lower than 100 nm.  相似文献   

14.
We present a new, sensitive, few mode fiber (FMF) surface plasmon resonance (SPR) biosensor with a sandwich assay for the detection of PSA. The side-polished FMF biosensor does not need a polarizer and a thin high-index overlayer. The optical sensitivity of the SPR sensor was determined as 2.5 × 10−6 RIU. In the SPR PSA sensor, the SPR signals were amplified by a factor of 6 in average over no secondary antibody, using the sandwich assay. The proposed FMF SPR biosensor has great potential for real-time analysis of immune reaction between biomolecules and the advantages of high-sensitivity and label-free detection.  相似文献   

15.
An extremely sensitive surface plasmon resonance based fiber optic sensor with indium nitride (InN) layer coated on the core of the optical fiber is theoretically analyzed. The proposed sensor exhibits high sensitivity in the near infrared region of spectrum. The optimized value of thickness of InN layer is found to be 70 nm. Possessing high sensitivity of 4493 nm/RIU, the 70 nm thick InN layer based fiber optic SPR sensor illustrates good sensing behavior.  相似文献   

16.
A systematically theoretical analysis of a surface plasmon resonance (SPR)-based optical fiber sensor is carried out. A three-layer mode (fiber core/gold/sample) is used to simulate the SPR-based optical fiber sensor. Several parameters including the thickness of gold layer, numerical aperture (NA) of fiber, sensing region length and fiber core diameter have been investigated to evaluate the sensitivity and measurement accuracy of sensor. A detailed explanation for the effect of these parameters on the sensor is presented to give a guideline to optimally design the SPR-based optical fiber sensor.  相似文献   

17.
A novel relative humidity (RH) sensor based on single-mode–multimode–single-mode (SMS) fiber structure is presented. The sensors are created through coating a thin layer of polyvinyl alcohol (PVA) on the multimode fiber deleted the cladding trough HF solution cauterization as the sensitive cladding film, whose refractive index varies as a function of humidity level. Due to the SMS fiber structure's sensitivity to ambient refractive index, the transmission spectra of SMS fiber structure coated PVA film are modified under exposure to different ambient humidity levels ranging from 30% to 80% RH. The related numerical simulations of transmission spectra of SMS fiber structure with different surrounding refractive index are also proposed. The sensitive of the RH measurement of 0.09 nm/% RH in the range from 30% to 80% RH is experimentally achieved. Meanwhile the intensity of wavelength at 1543 nm is decreasing as the humidity increasing. The experimental results obtained are consistent with the conclusion obtained by numerical simulating.  相似文献   

18.
Jian-Fei Liao 《中国物理 B》2022,31(6):60701-060701
A new design of surface plasmon resonance (SPR) sensor employing circular-lattice holey fiber to achieve high-sensitivity detection is proposed. The sensing performance of the proposed sensor is numerically investigated and the results indicate that our proposed SPR sensor can be applied to the near-mid infrared detection. Moreover, the maximum wavelength sensitivity of our proposed sensor can reach as high as 1.76×104 nm/refractive index unit (RIU) and the maximum wavelength interrogation resolution can be up to 5.68×10-6 RIU when the refractive index (RI) of analyte lies in (1.31, 1.36). Thanks to its excellent sensing performance, our proposed SPR sensor will have great potential applications for biological analytes detection, food safety control, bio-molecules detection and so on.  相似文献   

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