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1.
基于包层模的光纤布拉格光栅折射率传感特性   总被引:5,自引:0,他引:5  
恽斌峰  陈娜  崔一平 《光学学报》2006,26(7):013-1015
提出了基于光纤布拉格光栅(FBG)包层模式的折射率传感方案。实验中,利用不同浓度的丙三醇水溶液作为外界折射率传感溶液,采用氢氟酸溶液化学腐蚀的方法来减小光纤包层的直径以增大包层模式对外界折射率的敏感度,研究了腐蚀后光纤布拉格光栅包层模式的耦合波长对外部折射率的变化关系。实验结果表明在1.3300~1.4584的折射率范围内,包层模式耦合波长随外界折射率增大而增大,在接近光纤包层折射率处具有很高的折射率灵敏度,最大达到了172 nm/riu(refractive index unit)。而且,包层模谐振的光谱半峰全宽(约0.07 nm)仅为布拉格纤芯模谐振光谱半峰全宽的1/4,能够获得更好的传感精度。  相似文献   

2.
表面等离子体共振(SPR)光学传感器能实现生物医学的快速、 无标记、 高精度检测,是生物化学分析的重要方法。 研制了基于波长调制型的Kretschmann结构表面等离子体共振(SPR)生物传感系统,研究了在体溶液传感方式下的传感性能。 利用不同浓度的乙醇和乙二醇溶液进行体溶液传感测试。 实验结果表明,在折射率低时共振波长对折射率变化响应的灵敏度低,但响应的线性度高;随着折射率增大,共振波长对折射率的响应变化的灵敏度提高。 在1.407 0~1.430 RIU折射率范围内,灵敏度高达11 487 nm·RIU-1。 传感器的共振波长的稳定性为0.213 8 nm,可分辨最小折射率趋近10-6 RIU。 所研制的波长调制型表面等离子共振传感器操作简单、 灵敏度高、 检测范围大,可实现浓度极低生物标记物的有效检测,在化学、 生物传感领域有重要的应用。  相似文献   

3.
表面等离子体共振传感是基于光学消逝波与金属表面等离子体波共振的一种高灵敏度、快速、无标记的测量方式。光纤的表面等离子体共振传感具有在线测量、体积小、抗电磁干扰等优点。为提高折射率传感灵敏度,采用轮式侧边抛磨法抛磨掉多模光纤的全部包层和部分纤芯,并采用溅射法在光纤抛磨区先镀高折射率的铬层然后镀金膜,制作了侧边抛磨光纤表面等离子体共振传感器。研究结果表明:该传感器可实现液体折射率在1.333~1.431RIU范围的测试,平均光谱灵敏度为4.11×103 nm·RIU-1,在1.417~1.431RIU折射率范围内光谱灵敏度达1.09×104 nm·RIU-1,折射率测量范围和光谱灵敏度均优于已报道的结果。此外,该传感器具有良好的稳定性与重复性实验测试,最小分辨率约为3.6×10-5 RIU。该传感器光谱灵敏度高、检测范围大、尺寸小及良好的稳定性与重复性等优点,可被用于食品检测、环境监测、生物医学检测等相关领域。  相似文献   

4.
研究了去包层U型弯曲光纤的折射率传感特性.首先根据模间干涉理论,分析了U型光纤传感器的传感原理,指出干涉谱损耗峰波长与环境折射率和弯曲半径有关.利用单模光纤(SM-28)实验制作不同曲率半径的U型光纤传感器,把传感器的U型部分浸入不同折射率的液体中,研究其折射率传感特性.当U型光纤曲率半径为2.5~5.0mm时,传输光谱中均能观察到明显的模间干涉现象;当液体折射率从1.30RIU变到1.43RIU时,光谱损耗峰波长发生红移,且弯曲半径越大,折射率传感灵敏度越高;在曲率半径为5mm时灵敏度为207nm/RIU(折射率1.30~1.40RIU)和1 220nm/RIU(折射率1.40~1.42RIU).干涉峰的波形参量(半高宽、对比度)决定于包层模和纤芯导模之间的比例,当曲率半径为4mm时,损耗峰半高宽最小达3.2nm.综合半高宽和灵敏度两个参量,得出曲率半径4.5mm的U型光纤传感器品质因素最高,分别为43.1RIU-1(折射率1.30~1.40RIU)和191.2RIU-1(折射率1.40~1.42RIU),可直接由SM-28单模光纤制成,且制作工艺简单、成本低、机械强度高不需要任何特殊处理,具有很好的应用前景.  相似文献   

5.
长周期光纤光栅的折射率敏感特性   总被引:1,自引:0,他引:1  
利用光波导的耦合模理论分析了长周期光纤光栅(LPFG)的折射率传感特性,给出了LPFG 的谐振波长相对于环境折射率变化时的漂移量解析表达式.对 LPFG 的折射率传感特性进行了数值模拟.结果表明:在光栅周期不变的情况下,当包层折射率小于且接近外界环境折射率时,波长的漂移量增大,且对应的模次越高、包层半径越小、包层折射率越小,波长漂移量越大,即 LPFG 对应于外界折射率传感灵敏度得到显著提高;当外界环境折射率大于包层折射率时,光栅的谐振波长将近似不变.  相似文献   

6.
折射率不敏感的级联型单模-少模-单模光纤温度传感器   总被引:1,自引:0,他引:1  
提出了一种折射率不敏感的级联型单模-少模-单模光纤温度传感器。在制作传感器的过程中,设置熔接电流为100 mA,通过将少模光纤与单模光纤进行无错位熔接,以激发稳定的传输模式,形成光纤马赫-曾德尔干涉仪。由于外界环境的改变会引起少模光纤中不同模式之间相位差的改变,从而导致干涉条纹的漂移,因此通过检测干涉条纹的漂移量就可以实现待测参数的检测。少模光纤可以传输LP01,LP11,LP21,LP02共四种模式的光。实验中对长度为81.5 mm的传感器光谱进行分析可知,发生干涉的两个模式主要是LP01模和LP11模。利用该长度的级联型单模-少模-单模光纤传感器进行折射率和温度传感实验,结果表明,随着传感器温度不断的增加,其传输光谱出现了明显的蓝移现象,在27.6~93.8 ℃的温度变化范围内,灵敏度高达-85.9 pm·℃-1,且具有较好的线性度;在甘油折射率为1.347 1~1.443 9变化范围内,其传输光谱没有出现明显的漂移现象,灵敏度仅为3.697 34 nm·RIU-1,具有折射率不敏感特性。因此,相对于传统的包层模干涉型与多模干涉型光纤传感器,所提出的基于FMF的传感器更易于实现对传输模式的控制与分析,且具有结构简单、易于制备、灵敏度高等优点,能够避免温度与折射率同测的交叉敏感问题,可用于电力系统、生物医学、航空航天等领域的温度检测。  相似文献   

7.
晶格旋转光子晶体Mach-Zehnder干涉结构传感特性   总被引:1,自引:1,他引:0       下载免费PDF全文
基于光子晶体的自准直效应,利用在同一背景折射率下不同介质柱的等效折射率的不同,提出了一种基于晶格旋转的二维光子晶体Mach-Zehnder干涉仪折射率传感器。分别应用线缺陷和空气平板波导构成其分束镜和全反镜,并在其中一个干涉臂上设置传感区域。通过改变填充到传感区域溶液的浓度,改变介质柱的折射率,进而影响透射谱的中心波长,从而建立起溶液浓度和透射波长之间的数学关系;并进行了酒精溶液浓度测量的数值模拟,结果表明,该传感器在1.33~1.37折射率变化范围内灵敏度为250nm/RIU。  相似文献   

8.
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   

9.
侧面研磨光纤Bragg光栅的外部折射率敏感特性研究   总被引:11,自引:6,他引:5  
沈乐  郑史烈  章献民 《光子学报》2005,34(7):1036-1038
光纤Bragg光栅对外界折射率的变化不灵敏,无法直接作为气体、液体等的敏感元件.侧面研磨的光纤Bragg光栅,一侧包层减小至几微米,其辐射场可通过包层透射到被传感物质,因而被传感物质的折射率的变化可以改变光纤的有效折射率,从而使光栅的Bragg波长产生位移.实验中利用不同浓度的NaCl溶液来改变光纤光栅的外部折射率,Bragg中心波长的偏移量和浓度近似为线性关系.同时,透射功率的变化量和浓度也近似为线性关系.  相似文献   

10.
针对分子生物学与环境监测领域高灵敏度特异性检测需求,提出一种基于反射光谱特征辨识的单端反射式光纤折射率传感器模型,并给出了这种基于多模干涉原理的单模光纤-无芯光纤(Single mode fiber-No core fiber, SM-NCF)串接结构传感机理及其理论模型。无芯光纤实质上是一种结构特殊的多模光纤,在实际应用中无芯光纤结构本身作为纤芯,外界环境介质当作包层,构成光波导结构。这与普通多模光纤相比,不需要采用氢氟酸对多模光纤的包层进行化学腐蚀,不会降低光纤的机械性能,也不会破坏芯模传输条件,可以更好的实现对周围环境折射率的传感监测。当无芯光纤所处外界环境折射率发生改变时,其波导结构和包层有效折射率均会发生改变,从而引起传输光信号的纵向传播常数和模场分布也会随之发生改变,最终导致不同波长对应传输光功率的变化。上述效应反映在反射光谱上,即干涉波谷对应的谐振波长、波谷峰值强度以及半波宽度发生相应变化,通过辨识该反射光谱特征就可实现对外界环境折射率的测量。借助光束传播法(BPM),数值模拟得到无芯光纤长度分别为自映像距离和非自映像距离时的SM-NCF内部光场能量分布规律,并制作了无芯光纤长度分别为自映像距离和非自映像距离的SM-NCF光纤折射率传感探头,将作为传感区域的无芯光纤一端与标准单模光纤熔接,采用磁控溅射技术在无芯光纤另一端面镀上金膜,用以提升反射光谱强度。在此基础上,搭建了基于SM-NCF终端反射型的光纤折射率试验系统,并开展了相关实验研究。研究结果表明,当无芯光纤长度是15 mm(自映像距离)时,随着液体折射率从1.331 5依次增大至1.390 2,SM-NCF反射光谱逐渐向长波方向偏移,其反射峰谐振波长对应的折射率灵敏度约为197.57 nm·RIU-1,相关系数为0.93;反射峰值强度也呈现逐渐降低趋势,其折射率灵敏度约为-62.80 dB·RIU-1。当无芯光纤长度是20 mm(非自映像距离)时,随着液体折射率依次增大,SM-NCF反射光谱呈现明显双峰现象,且均逐渐向长波方向偏移,dip2谐振峰波长折射率灵敏度约为133 nm·RIU-1,相关系数为0.96;反射峰值强度也呈现逐渐降低趋势,其折射率灵敏度约为-31.66 dB·RIU-1。对比分析可知,不论是从反射峰谐振波长偏移的角度,还是从反射峰值强度的角度,自映像距离长度对应的 SM-NCF终端反射型光纤传感器均具有较高灵敏度。对于相同折射率液体环境,非自映像距离长度对应的SM-NCF反射光谱半波宽度与自映像距离长度相比,呈现显著变窄趋势。相对于SMS透射型传感结构,当传感区域长度相同时,SM-NCF反射型结构能够实现对光波信号的往返两次调节。这种终端反射型SM-NCF传感器改进了传统透射型折射率传感器不便与待测液体相接触的缺点,具有结构简单、易于制作、抗电磁干扰能力强以及便于远程遥测等优点,能够为后续生化与环保监测领域研究应用提供有益支持。  相似文献   

11.
A fibre optic sensor capable of discriminating between temperature and strain, using a single fibre Bragg grating, is presented. The technique exploits the core-cladding mode coupling of a tilted fibre Bragg grating (TFBG). The core and cladding modes exhibit different thermal sensivities, while the strain sensivities are approximately equal. Monitoring the core-core mode coupling resonance and the core-cladding mode coupling resonance of the TFBG spectrum allows the separation of the temperature and strain induced wavelength shifts.  相似文献   

12.
We demonstrate a new type of fiber optic bend sensor with a hybrid structure made up of a long period grating (LPG) and a tilted fiber Bragg grating (TFBG). The sensing mechanism is based on the spectrum of power transfers between the core and cladding modes from a TFBG located downstream from a LPG. We show that the curvature of a beam can be determined by the reflected power difference between the core mode and the recoupled cladding modes. We further provide design rules for the LPG and TFBG to optimize and linearize the sensor response. In addition, the temperature cross-sensitivities of this configuration are also investigated for two different types of fiber.  相似文献   

13.
A novel lateral force sensor based on a core-offset tilted fiber Bragg grating (TFBG) is proposed and experimentally demonstrated. The lateral force is determined by the differential reflected powers between the cladding mode and Bragg mode in the TFBG. The sensors respond monotonically with the lateral force increasing from 0 to 1.75 N. The sensitivity of such a core-offset TFBG sensor can be tailored by choosing different core-offset values. The simple differential power detection method makes the implementation of the sensor system cost-effective and free of the influence of environmental and system fluctuations.  相似文献   

14.
不同包层直径的倾斜光纤光栅折射率传感特性   总被引:3,自引:0,他引:3  
苗银萍  刘波  赵启大 《光学学报》2008,28(11):2072-2076
倾斜光纤光栅的透射谱中有纤芯模和大量的包层模,它们具有与布拉格光栅相同的温度特性.利用HF酸腐蚀的方法得到具有不同包层直径的倾斜光纤光栅,研究了其对外界折射率的传感特性.结果表明,外界环境折射率在1.333~1.4532之间变化时,同一直径倾斜光纤光栅的高阶包层模的敏感性要比低阶包层模强;随着包层直径的减小,包层模的敏感性增强,且在折射率比较高的环境中有更高的敏感性.因此,利用倾斜光纤光栅的温度特性不仅可以解决温度交叉敏感问题,而且通过小同的腐蚀程度能定制所需要的灵敏度,以实现对环境折射率的高灵敏度测量.该办法可应用于对生物和化学等高灵敏度传感领域的各种溶液进行实时监控.  相似文献   

15.
A new type fiber bending sensor based on a tilted fiber Bragg grating (TFBG) interacting with a multimode fiber (MMF) is presented. The sensing head is formed by insertion of a small section of MMF between a single-mode fiber (SMF) and the TFBG. The average reflective power in the cladding modes decreases with the increase of curvature. The measurement range of the curvature from 0 to 2.5 m−1 with a measurement sensitivity of −802.4 nW/m−1 is achieved. The proposed sensor is also proved as temperature-independent from the experimental investigation.  相似文献   

16.
We proposed and experimentally demonstrated a cascaded tilted fiber Bragg grating(TFBG) for enhanced refractive index sensing. The TFBG is UV-inscribed in series in ordinary single-mode fiber(SMF) and reduced-diameter SMF with the same tilt angle, and then excites two sets of superposed spectral combs of cladding modes. The cascaded TFBG with total length of 18 mm has a much wider wavelength range over 100 nm and narrower wavelength separation than that of a TFBG only in the SMF, enabling an enlarged range and a higher accuracy of refractive index measurement. The fabricated TFBG with the merits of enhanced sensing capability and temperature self-calibration presents great potentials in the biochemical sensing applications.  相似文献   

17.
提出了一种基于表面等离子体共振(SPR)效应增强的光子晶体光纤折射率传感器。该传感器结构通过光纤熔接机拼接光子晶体光纤(PCF),在光子晶体光纤中间引入一个空气孔形成PCF-空气孔-PCF的光纤传感结构,随后使用磁控溅射镀膜工艺在其表面沉积一层薄金膜制备而成。实验探究了折射率及温度对传感器的响应。结果表明,在1.333~1.389的折射率范围内,所提出的传感器的平均折射率灵敏度为2 142.52 nm,且测量线性度为0.981,品质因子约13.10。实验结果表明该传感器对温度不敏感。相比于无空气孔的PCF传感结构,引入的空气孔增强了SPR效应,使得传感器拥有良好的共振峰深度。得益于上述优势,该类型传感器有望在生物医学、环境监测等领域得到应用。  相似文献   

18.
Optical fiber gratings have developed into a mature technology with a wide range of applications in various areas, including physical sensing for temperature, strain, acoustic waves and pressure. All of these applications rely on the perturbation of the period or refractive index of a grating inscribed in the fiber core as a transducing mechanism between a quantity to be measured and the optical spectral response of the fiber grating. This paper presents a relatively recent variant of the fiber grating concept, whereby a small tilt of the grating fringes causes coupling of the optical power from the core mode into a multitude of cladding modes, each with its own wavevector and mode field shape. The main consequence of doing so is that the differential response of the modes can then be used to multiply the sensing modalities available for a single fiber grating and also to increase the sensor resolution by taking advantage of the large amount of data available. In particular, the temperature cross‐sensitivity and power source fluctuation noise inherent in all fiber grating designs can be completely eliminated by referencing all the spectral measurements to the wavelength and power level of the core mode back‐reflection. The mode resonances have a quality factor of 105, and they can be observed in reflection or transmission. A thorough review of experimental and theoretical results will show that tilted fiber Bragg gratings can be used for high resolution refractometry, surface plasmon resonance applications, and multiparameter physical sensing (strain, vibration, curvature, and temperature).  相似文献   

19.
Guo T  Shang L  Ran Y  Guan BO  Albert J 《Optics letters》2012,37(13):2703-2705
A directional vibration sensor based on polarization-controlled cladding-to-core recoupling is demonstrated. A compact structure in which a short section of multi-mode fiber (MMF) stub containing a weakly tilted fiber Bragg grating (TFBG) is spliced to another single-mode fiber without any lateral offset. Multiple core modes of the MMF are coupled at the junction and appear as well defined resonances in reflection from the TFBG. Some of those resonances exhibit a strong polarization and bending dependence. Both the orientation and the amplitude of the vibrations can be determined unambiguously via dual-path power detection of the orthogonal-polarimetric lowest order LP(1n) modes. Meanwhile, the unwanted power fluctuations and temperature perturbations can be referenced out by monitoring the fundamental LP(01) mode resonance.  相似文献   

20.
A novel fiber grating pair that consists of a conventional long-period fiber grating and a fiber Bragg cladding grating (FBCG) is proposed. The FBCG is a new type of fiber grating in which refractive index modulation is formed in the cladding. Through the coupled-mode theory, we accurately calculate the coupling coefficients between modes supported in the fibers. And some other mode coupling features in the fiber cladding gratings are analyzed in detail. The calculation of the modes involved in this paper is based on a model of three-layer step-index fiber geometry. Then, we have investigated the sensitivity characteristics for variation of the modulation strengths of the fiber Bragg cladding gratings’ resonance peaks and the long-period cladding gratings’ (LPCGs) dual resonant peaks. Finally, the modulation strength sensitivity of the grating pair’s three resonant peaks is demonstrated, and the results indicate that these grating pairs may find potential applications in optical fiber sensing.  相似文献   

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