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1.
基于飞秒激光加工的马赫-曾德尔干涉氢气传感器   总被引:1,自引:0,他引:1  
成洁  杨明红  王闵  戴玉堂 《光学学报》2012,32(7):706001-83
介绍了一种基于光纤微加工的氢气传感技术方案。利用波长为800nm的飞秒激光脉冲在普通单模光纤上加工马赫-曾德尔(M-Z)干涉腔,并采用磁控溅射方法在加工后的M-Z干涉微腔上溅射钯(Pd)膜,制备了一种新型的光纤氢气传感器。分析了加工工艺对微腔干涉效果的影响,选择合适的加工参数以及加工后对微腔进行后续处理,可使微腔的透射光谱的分辨率得到提高。实验研究了腔长为40μm的M-Z干涉传感器分别镀36nm、110nmPd膜后,对氢气的响应。结果表明,在不同的氢气浓度下,镀Pd膜的M-Z干涉传感器都表现出对氢气的敏感特性,随着氢气浓度的增大,透射光谱会向长波长方向偏移,其中Pd膜厚度为110nm比厚度为36nm的传感器对氢气有更好的灵敏度。  相似文献   

2.
基于Michelson干涉仪的高灵敏度光纤高温探针传感器   总被引:2,自引:0,他引:2       下载免费PDF全文
提出了一种简单的高灵敏度的光纤高温探针传感器, 该传感器由一小段多模光纤和一端镀有银膜的单模光纤熔接而成. 由于单模光纤和多模光纤的纤芯直径不同, 当光波从多模光纤传输至多模光纤和单模光纤的熔接端面时, 一部分纤芯光耦合进包层, 因为单模光纤纤芯的折射率和包层的折射率不同, 不同模式的光经过银膜反射后在多模光纤内重新耦合进单模光纤, 最终形成干涉.随着外界温度的升高, 干涉谱峰值会向长波方向漂移. 实验结果证明这种传感器在470 ℃–600 ℃范围内具有很好的稳定性, 线性度达99.7%, 灵敏度为120 pm/℃, 可作为远距离反射型探针温度传感器, 在石油探测和油气田开发等领域有着广泛的应用前景. 关键词: 光纤传感 温度测量 Michelson干涉  相似文献   

3.
The Polymer Composites group at the National Institute of Standards and Technology has efforts in both on-line flow and cure sensing for liquid composite molding. For our flow program, a novel fiber optic real-time sensor system has been developed that can sense resin at various locations on a single fiber using long-period gratings and a polychromatic source. The sensor operation and characterization will be discussed along with sensor performance during mold filling with various types of reinforcement. The cure sensing program focuses on the interface-sensitive fluorescence response of a dye molecule grafted to a high-index glass fiber. The fluorescence emission of the fluorophore undergoes a blue shift as the resin cures. The fluorescence sensor is made by grafting a silane functional fluorophore onto the surface of the glass with close attention to layer thickness. Fluorescence emission of the grafted fluorophore film is shown to be sensitive to epoxy resin cure, co-silane, and layer thickness. The response of the grafted fluorophore to cure on a high-index fiber is demonstrated.  相似文献   

4.
通过将一段长为17 mm的多模光纤两端分别与单模光纤对芯熔接,然后对多模光纤部分进行拉锥处理,得到一种波长和强度同时对温度响应的锥形多模光纤温度传感器。实验研究了30 ℃~80 ℃范围内传感器的温度传感特性。实验结果表明:当环境温度发生变化时,该传感器在1 542 nm附近干涉波谷的波长和强度对温度的响应灵敏度分别可达到0. 041 nm/℃和0. 106 dB/℃,并且传感器干涉条纹的波长响应和强度响应之间呈良好的线性关系。基于传感器波长响应与强度响应之间的该线性关系,通过传感信号强度的检测即可实现干涉型光纤传感器的相位解调,该方法为传感解调信号提供了新思路,具有重要的参考价值。  相似文献   

5.
张晓丽  曾捷  梁大开  赵志远 《光学学报》2008,28(s2):373-377
采用SG-12SA作为镀膜设备, 研究了当金膜厚度相同的情况下, 光纤表面等离子体波传感器在有粘结层和无粘结层时的光谱特性; 当粘结层厚度相同时, 光纤表面等离子体波传感器对应不同金膜厚度的光谱特性。结果表明:对镀有同样金膜厚度的光纤表面等离子体波传感器, 纤芯与金膜之间有粘结层相对于无粘结层, 共振波长出现红移, 且共振深度减小; 对镀有同样粘结层厚度的光纤表面等离子体波传感器, 随着金膜厚度的增加, 共振波长亦逐渐发生红移。这些研究成果为以后研制性能优良的光纤传感器提供了参考, 同时为在直径为微米级的三维圆柱面上镀膜提供一定的指导意义。  相似文献   

6.
矩形折射率调制型薄膜长周期光纤光栅特性研究   总被引:1,自引:0,他引:1  
镀膜长周期光纤光栅传感器是目前光纤光栅传感研究的一个热点,但关于此类传感器模型的全面的理论分析目前还很少。本文基于严格的四层模型,从理论上对芯层折射率调制为矩形波调制的薄膜长周期光纤光栅的特性进行了详细的分析。在充分考虑材料色散对光纤芯层和包层的影响后,对薄膜参数、占空比和环境折射率的变化对镀膜长周期光纤光栅的谱特性的影响进行了数值研究。研究结果表明,薄膜参数对透射谱有重要影响,合理设计薄膜厚度可以获得较佳的损耗峰。研究还发现,镀膜后占空比对透射谱的影响减小,而对环境折射率变化的敏感度增加。在占空比为0.5时光栅具有最大的损耗峰值。  相似文献   

7.
王闵  刘复飞  周贤  戴玉堂  杨明红 《物理学报》2017,66(7):70703-070703
将功能敏感材料与光纤在物理层面进行有机融合,充分发挥光纤传感器在结构集成、材料集成等方面的优势,将有望发展新型的光纤传感器件和系统.本文综述了飞秒激光光纤微加工技术分别在标准的单模光纤和光纤光栅上制备微结构,再结合敏感材料制备技术,实现在物理层面上光纤传感器材料和结构的集成和融合,探索实现新型高性能的光纤传感新技术.  相似文献   

8.
表面等离子体共振是一种免标记的传感技术,当介质周围的介电常数发生改变时,则SPR谐振光谱特性也会随之改变.因此表面等离子体共振传感技术已广泛应用于生物化学和环境监测等领域.由于二氧化钛(TiO2)覆盖层不仅可以保护金属层,还能调谐SPR谐振的光谱强度和谐振波长于近红外波段,应用于1550 nm的光纤传感,其氧化还原反应...  相似文献   

9.
F. Xu  D. Chen  B. Peng  J. Xu  G. Wu 《Laser Physics》2012,22(10):1577-1580
We demonstrate a novel all-fiber refractometer which is a multimode-single mode-multimode (MM-SM-MM) fiber structure formed by splicing a section of uncoated single mode fiber (SMF) with two short sections of multimode fibers (MMFs). Owing to the core mismatch at the splicing points of the SMF with two sections of MMFs, part of the guided light propagates in the cladding of the SMF, which makes the SMF sensitive to the external refractive index (RI). RI sensing is achieved by measuring the wavelength shift of the interference pattern of the cladding mode and the core mode of the SMF. A RI sensor with an average sensitivity of 412 nm/RUI (refractive index unit) for a RI range from 1.333 to 1.400 is presented.  相似文献   

10.
Wang L  Zhou B  Shu C  He S 《Optics letters》2011,36(3):427-429
We propose and experimentally demonstrate a method for temperature sensing using stimulated Brillouin scattering (SBS)-based slow light. The approach relies on temperature dependence of the Brillouin frequency shift in a fiber, hence the time delay of an input probe pulse. By measuring the delay, temperature sensing can be realized. We achieve temperature measurement in a 100 m single-mode fiber (SMF) using a cw pump. The main temperature-sensing range is ~18°C from the room temperature, limited by the SBS gain bandwidth. To apply the technique for measurement of a shorter fiber segment, a pulsed pump is used to introduce SBS slow light. Temperature sensing is achieved in a 2 m SMF with a main sensing range of around ~25°C. The scheme is easily implemented, exhibits a relatively high temperature sensitivity with a resolution better than 1.0°C, and is potentially applicable for distributed sensing.  相似文献   

11.
光纤表面等离子体共振传感器具有体积小、抗电磁干扰,可以实现在线实时远距离检测的优点。为提高传感器的性能,建立了侧边抛磨光纤表面等离子体共振传感的物理模型,分别研究了侧边抛磨光纤的剩余厚度、银膜层的厚度对传感器的灵敏度、共振峰的深度和半高全宽等的影响。结果表明:光纤剩余厚度越小,表面等离子体共振现象越强;随银膜层的厚度增大,共振峰的宽度变宽,而传感器的灵敏度呈现非单调变化。通过综合表面等离子体共振传感器的折射率传感灵敏度和共振峰半高全宽,提出了质量因数作为传感器的优化指标,并最终得到最优化的设计方案为光纤剩余厚度为66.5 μm,银膜的厚度为50 nm,此时质量因数达到98.67。  相似文献   

12.
采用磁控溅射方法在侧边抛磨的光纤光栅(D型光纤光栅)上溅射40 nm WO3-Pd复合薄膜,制作了D型光纤光栅氢气传感器.40 nm WO3-Pd复合薄膜是由5 nm的WO3、5 nm的WO3/Pd混合膜和30 nm的Pd 薄膜组成.实验中,首先采用射频溅射技术向D型光纤光栅溅射5 nm WO3薄膜,再利用共溅射技术溅射5 nm WO3/Pd混合膜,最后用直流溅射技术溅射30 nm的Pd薄膜.SEM结果显示在多次通氢气后WO3-Pd薄膜仍然具有较好的表面形貌,这说明WO3-Pd复合薄膜具有较好的机械性能.实验结果表明:该氢气传感器具有较好的重复性,同镀有同样氢气敏感膜的普通FBG相比,D型光纤光栅的灵敏度提高了200%|在氢气体积浓度为6%时,D型光纤光栅传感器的波长变化为15pm.  相似文献   

13.
An optical fiber curvature sensor based on a pressure-induced birefringence singlemode fiber loop mirror is presented. The birefringer SMF is made by applying a transverse force against a short length of singlemode fiber. The length of the sensing element for the curvature sensing is about 150 mm. The sensitivity of the curvature measurement experimentally is 0.0263 m−1/pm. And the temperature effect of the proposed sensor is also analyzed. Comparing with the sensor of photonic crystal fiber, it is more convenient and simply.  相似文献   

14.
为了实现对生物分子间相互作用过程的实时、灵敏、快速监测,获得生物分子的有无、浓度与相互作用的动力学参数信息,本文设计了基于光纤生物传感器的生物亲和性检测方法。首先,针对光干涉生物亲和性传感检测系统的光学传输系统"Y"型分叉光纤与光纤探针之间的耦合问题,提出了自聚焦透镜与石英光纤耦合结构,该耦合结构偏心公差能够达到0.02 mm,倾斜公差能够达到0.1°;针对干涉光谱信号的高频噪声问题,采用一种改进的经验模态分解干涉光谱信号处理方法,有效避免了干涉光谱曲线滤波处理后极值点位置的偏移;同时采用局部拟合极值点计算生物分子膜层厚度的方法,将生物分子膜层厚度的分辨率提高到50 pm。利用所搭建的光干涉生物亲和性检测系统,建立了HER3-IgG1抗体药物利用金纳米粒子进行信号放大,实现对其浓度进行定量检测的新方法,检测过程中无需清洗,不产生交叉污染。实验结果表明:系统检测限能达到0.082 6 μg/mL,该系统具有检测时间短,测量准确、精度高、成本低廉等特点,能够应用于药代动力学研究中。  相似文献   

15.
A new process is developed to fabricate a highly sensitive and selective hydrogen sensor by depositing a partially crystalline and highly oriented film of MoS2 from its single layer suspension on an alumina substrate. When these films are promoted with some catalysts selected from Pt-group metals (Pt, Pd, Ru or any combination of these metals) they exhibit a high sensitivity and selectivity to hydrogen gas. Unlike other metal oxide sensors which are sensitive to many reducing and oxidizing gases and operate at a temperature of 350 °C or higher; this sensor is highly selective to hydrogen gas and its operating temperature is from 25 to 150°C. The lower operating temperature enhances safety when dealing with hydrogen gas. The sensor response to hydrogen at 120 °C is linear in concentration from 30 to 104 ppm with a 10 to 30 second response time and a 45 to 90 second recovery time. Above 104 ppm the sensor is still linear but the slope of conductance versus hydrogen concentration changes.  相似文献   

16.
利用表面等离子体共振效应,研究了金属镀层厚度对光纤表面等离子体波传感器的影响。在其它参量一定的情况下,不同金属膜层厚度的传感器对应着不同的共振波长,根据这一特性设计了分布式光纤表达等离子体波传感器。突出优点是能进行多点测量。  相似文献   

17.
Qi ZM  Honma I  Zhou H 《Optics letters》2006,31(12):1854-1856
Layer-by-layer self-assembled multilayer thin films of gold nanoparticles (GNPs) linked with myoglobin (Mb) show substantial sensitivity to humidity at room temperature according to measurements of localized surface plasmon resonance (LSPR) absorption that relies on the interparticle interaction present in the film. The sensor response is reversible, with response and recovery times as low as 5 s. The sensing mechanism is as follows: as the ambient humidity changes, Mb molecules change their size, making the GNP-to-GNP spacing and thereby the interparticle interaction change; the change in the interparticle interaction causes a change in the LSPR absorption of the multilayer thin film. We found that the LSPR band of the multilayer thin film was almost insensitive to both the surrounding refractive index and the adlayer thickness, rendering the multilayer-film-based humidity sensor highly immune to ambient disturbances.  相似文献   

18.
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   

19.
光纤传感是现代光纤技术的重要应用之一。制作了一种基于两个单模光纤粗锥串接的全光纤型马赫-曾德尔高温高灵敏温度传感器。纤芯中传输的光通过第一个光纤锥耦合, 一部分进入纤芯传输,另一部分进入包层形成包层模,纤芯模和包层模具有不同的有效折射率,经过干涉臂的传输产生了光程差。纤芯和包层传输的光再经过第二个光纤锥耦合,形成干涉进入输出光纤传输。对不同长度的传感器进行实验研究,得出传感臂长度与干涉周期之间的关系。研究了传感器温度响应特性,给出了温度响应灵敏度。实验结果表明,在30~400 ℃温度范围内,长度为35 mm的传感器可以得到较高的温度响应灵敏度,其响应灵敏度为0.115 nm·℃-1。利用傅里叶变换对传感器透射谱进行了分析,可以确定在长度为35 mm的传感器中仅有基模LP01和高阶模LP08两种模式,透射谱就是由这两种模式干涉形成的。该传感器体积小、精度高、抗电磁干扰,具有易于制作、对比度大、质轻、灵敏度高、耐高温等优点。可用于高温气体温度测量及油气井测井等领域的高灵敏度温度传感测量。  相似文献   

20.
A plasmonic Mach-Zehnder interferometric sensor based on a semicircular aperture-slit nanostructure patterned on a metal-insulator-metal film is proposed and demonstrated by finite difference time domain(FDTD) simulation. Due to the interference between two different surface plasmon polariton modes in this design, the transmission spectra exhibit oscillation behaviors in a broad bandwidth, and can be readily tailored by changing the SPP path length and core layer thickness. Based on this principle, the characteristics of refractive index sensing are also demonstrated by simulation. This structure is illuminated with a collimated light source from the back side to avoid impacts on the interference. Meanwhile,these results show that the proposed structure is promising for portable, efficient, and sensitive biosensing applications.  相似文献   

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