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1.
本文展示一种由两根微米光纤构成的耦合型环境折射率传感器。微米光纤表面存在倏逝波,芯外介质折射率微小的改变将引起倏逝场分布变化,从而导致能量在耦合器两臂中的重新分配。本文通过测量耦合器两端出射光功率的比值来对葡萄糖溶液的浓度进行传感,实验结果表明该微米光纤耦合型传感器的浓度传感灵敏度可达1.58 mol·L~(-1)。本文用耦合模理论详细分析了两根相邻微米光纤的耦合效率与芯外介质折射率之间的关系,发现减小耦合区的光纤的直径,增大入射光波长或增大耦合长度,都可以进一步提高这种传感器的灵敏度。  相似文献   

2.
强激光与气体的长距离相互作用能产生许多新奇的物理效应,而自由空间光束的自聚焦、衍射、散射等问题限制了该科技领域的发展。本文提出了一种新型多孔芯光子晶体光纤,纤芯亚波长、低折射率空气孔可以传光,具有宽带、低损耗、单模传输特性。利用倏逝波耦合效应,研究了纤芯亚波长空气孔束缚光的原理。根据光波传输的电磁场理论,分析了低折射率空气孔中的光强增大效应。强光在空气孔中长距离传输,为光与物质的相互作用提供了新条件,可以用于气体传感、非线性光学、高集成光子技术、原子操控等。由于纤芯空气孔可以传光,改变空气孔的大小,直接影响模场分布,进而可以获得很高的结构双折射。通过光纤结构参数的合理设计,分别获得了B=4×10-2的高双折射、纤芯直径5 μm的大模场高双折射、大模面积单偏振单模特性,在光纤偏振器、光纤滤波器、光开关及光纤传感等领域有广泛的应用前景,为新型光场调控提供了新方法。  相似文献   

3.
内置调制层型光纤表面等离子体波共振传感器研究   总被引:2,自引:1,他引:1  
孙晓明  曾捷  张倩昀  穆昊  周雅斌 《光学学报》2013,33(1):128002-250
研究了一种基于内置调制层结构的光纤表面等离子体波共振(SPR)传感器。通过在金膜与纤芯的内侧增覆具有不同厚度和属性的光学透明薄膜作为内调制层,构成了性能独特的光电复合薄膜,起到调节倏逝波矢量和金膜表面等离子体振荡波矢量的双重作用,进而控制共振效应,为调节灵敏度提供依据。采用时域有限差分方法对内置调制层结构光纤SPR共振激励模型属性进行数值仿真。在此基础上,研制了用于液体折射率测量的内置调制层型光纤SPR传感探针。实验结果表明,该传感器在1.335~1.392折射率范围内,随着待测液体折射率的增大,SPR共振光谱向长波方向偏移,且灵敏度达到2263.1nm/RIU,与基于纤芯-金膜-环境介质三层结构的常规光纤SPR传感器相比提高一倍,能够更好地满足环境折射率检测的需求。  相似文献   

4.
基于多芯少模光纤结构特性,提出了一种具有开放式感知通道的多芯少模光纤表面等离子体共振生物传感器.建立了多芯少模光纤表面等离子体共振生物传感器的模型,利用有限元方法分析了纤芯气孔间距、膜层厚度、膜层材料以及不同传输模式对传感器性能的影响,并讨论了传感器多通道感知性能.仿真分析发现,纤芯气孔间距决定了倏逝波的耦合强度,材料特性和模式共同影响了表面等离子体共振峰的位置和灵敏度.经过计算可知:当单个凹槽传感通道上沉积100 nm铟锡氧化物薄膜,分析物折射率范围为1.33—1.39时, LP11ax模式对应的平均光谱灵敏度为12048 nm/RIU(其中RIU为折射率单位,即refractive index unit),最高灵敏度为20824.66 nm/RIU,最大折射率分辨率可达4.8×10~(–6) RIU;当光纤外围凹槽镀上不同厚度的金膜、银膜和铟锡氧化物膜时,既可以单独探测生物物质,也可以联合检测同一生物物质,实现了传感通道的控制灵活性和测试物质的多样性.  相似文献   

5.
罗爱平  高侃  刘峰  瞿荣辉  方祖捷 《光学学报》2004,24(12):1603-1606
对长周期光纤光栅和双锥形光纤之间的倏逝波耦合作用进行了研究。理论分析和实验研究表明,由于锥形光纤和长周期光纤光栅物理边界外倏逝波之间的交叠,长周期光纤光栅产生的包层模,可以耦合到锥形光纤的包层模并从锥形光纤的纤芯输出。要获得高的耦合效率,应满足模式匹配的条件,同时要尽量减小两光纤之间的距离。耦合特性还与长周期光栅和双锥形光纤的相对位置有关,为获得高的耦合效率,耦合区应位于长周期光栅区的后面。这种倏逝波耦合作用,为监测实际应用系统中长周期光纤光栅的特性提供了一种新方法;为利用锥形光纤和长周期光纤光栅开发新型光纤器件,提供了一种可能的方案。  相似文献   

6.
基于倏逝波理论和光学谐振原理,研究了倏逝波在光子晶体中的存在形式及空气栅光子晶体F-P腔的折射率传感机理,并建立谐振波长与待测气体折射率的关系模型。当入射光以大于全反射临界角的角度入射到光子晶体中,由于倏逝波的作用,在中心介质层形成F-P腔并产生谐振,电磁场被局部增强,与待测气体充分作用,从而使该传感结构对待测气体的折射率具有较高的敏感性。利用传输矩阵理论进行数值模拟,结果表明,折射率传感的Q值可达3447.0,灵敏度可达1260.0 nm/RIU,证明该光子晶体F-P腔折射率传感结构具有很好的传感特性,可为高精度气体折射率传感器的设计与应用提供一定的理论参考。  相似文献   

7.
对长周期光纤光栅和双锥形光纤之间的倏逝波耦合作用进行了研究。理论分析和实验研究表明,由于锥形光纤和长周期光纤光栅物理边界外倏逝波之间的交叠,长周期光纤光栅产生的包层模,可以耦合到锥形光纤的包层模并从锥形光纤的纤芯输出。要获得高的耦合效率,应满足模式匹配的条件,同时要尽量减小两光纤之间的距离。耦合特性还与长周期光栅和双锥形光纤的相对位置有关,为获得高的耦合效率,耦合区应位于长周期光栅区的后面。这种倏逝波耦合作用,为监测实际应用系统中长周期光纤光栅的特性提供了一种新方法;为利用锥形光纤和长周期光纤光栅开发新型光纤器件,提供了一种可能的方案。  相似文献   

8.
将新型量子点荧光传感技术与光纤倏逝波传感技术相结合,发展了一种基于量子点荧光效应并结合倏逝波传导进行溶液酸碱度检测的新型传感技术,具有灵敏度高、检测速度快、便于微环境检测、可实现远程探测、实时监测和原位分析等特点。详细介绍了用于倏逝波传感的锥柱组合型光纤荧光探头的制备方法,量子点在光纤探头表面的修饰流程,光谱与强度两种光纤pH传感平台的建立,并分别从响应范围、线性度、重复性和稳定性等方面对CdSe/ZnS量子点应用于光纤pH传感进行了评价。结果表明,在pH值为2~12的范围内,CdSe/ZnS量子点的荧光光谱信号的峰位在强酸和强碱的情况下都会产生红移,且红移量随pH值的变化呈线性关系,其量子点荧光强度信号随pH值的减小呈线性降低关系,通过在强酸和强碱下交替测试的实验表明其具有较好的重复性,利用荧光强度传感平台进行实时监测的实验表明其具有较好的稳定性。因此,将CdSe/ZnS量子点用于倏逝波光纤pH传感具有可行性,在生物化学、环境监测、医学临床、食品安全等领域的pH值测量方面有着广泛的应用前景。  相似文献   

9.
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   

10.
基于倏逝波的光纤生物传感器研究   总被引:2,自引:1,他引:1  
邓立新  冯莹  魏立安  柳珑 《光子学报》2005,34(11):1688-1692
构建了一种以光纤束作为激发光信号和荧光信号传输通道的光纤生物传感器结构.根据光纤探针的倏逝波理论和模式匹配理论对光纤探针的几何形状进行了设计,制作了数组光纤探针并根据需要对其中一部分进行荧光标记.选择了光纤探针置于空气中和水溶液中两种情况,对光纤传感器系统进行了信号检测实验,对比标记了的和未标记的相同几何结构参数的光纤探针两者在系统中被探测的信号差异.从二者的差别区分出系统所探测的倏逝波激发的荧光信号,证明了该光纤传感器系统的可行性.  相似文献   

11.
Random-hole optical fiber evanescent-wave gas sensing   总被引:4,自引:0,他引:4  
Pickrell G  Peng W  Wang A 《Optics letters》2004,29(13):1476-1478
Research on development of optical gas sensors based on evanescent-wave absorption in random-hole optical fibers is described. A process to produce random-hole optical fibers was recently developed that uses a novel in situ bubble formation technique. Gas molecules that exhibit characteristic vibrational absorption lines in the near-IR region that correspond to the transmission window for silica optical fiber have been detected through the evanescent field of the guided mode in the pore region. The presence of the gas molecules in the holes of the fiber appears as a loss at wavelengths that are characteristic of the particular gas species present in the holes. An experimental setup was constructed with these holey fibers for detection of acetylene gas. The results clearly demonstrate the characteristic absorptions in the optical spectra that correspond to the narrow-line absorptions of the acetylene gas, and this represents what is to our knowledge the first report of random-hole fiber gas sensing in the literature.  相似文献   

12.
A double tapered optical fiber sensor based on evanescent field-effect and surface modification technology was introduced in this work. Whether the liquid and gas molecules had polarities or not, they all could be detected by the sensors modified in different silane coupling agents. At the same time, the sensing characters of the single mode optical fiber with three different tapering lengths were researched, and it came to a conclusion that the optical fiber sensor had stronger evanescent field effect and higher sensitivity when length of tapered fiber was 30 mm. The functionalized tapered fibers modified by 3-aminopropyltrimethoxy silane (APTES) or 3-methylpropenylacyloxy propyltrimethoxy silane (MPAPTES), were employed to detect the polar or nonpolar molecules which had corresponding features. Further, the results of quantitative tests showed that the fiber optic sensor was sensitive to the change of the ethanol concentration and the characteristic peaks of the absorption power spectra could reach to 3–5 dB.  相似文献   

13.
In-line fiber optic structures for environmental sensing applications   总被引:1,自引:0,他引:1  
Dhawan A  Muth JF 《Optics letters》2006,31(10):1391-1393
Fiber optic sensors based on the interaction of surface plasmons or evanescent waves with the surrounding environment are usually obtained by tapering an optical fiber, which significantly weakens the structure, or by use of just the end of the optical fiber. A fiber optic structure that maintains the structural integrity of the optical fiber with a long environmental interaction length is presented. Graded-index optical fiber elements are used as lenses, and a coreless optical fiber acts as the environmental interaction area. These elements are fused by an optical fiber splicer and result in a continuous fiber optic sensing system.  相似文献   

14.
光纤倏逝波型石英增强光声光谱技术   总被引:1,自引:0,他引:1       下载免费PDF全文
何应  马欲飞  佟瑶  彭振芳  于欣 《物理学报》2018,67(2):20701-020701
采用块状光学准直聚焦透镜组的传统石英增强光声光谱(QEPAS)技术存在体积难以缩减,结构稳定性不佳,无法适应空间狭小、振动复杂的特殊环境等缺点.基于此,将光纤倏逝波技术与QEPAS技术相结合,提出了一种新型微纳结构光纤QEPAS痕量气体检测技术.实验中,为了提高QEPAS系统信号幅值,优化了石英音叉与激光束的空间位置、激光波长调制深度,同时对比了两种不同共振频率的石英音叉,最终采用共振频率较低的30.720 kHz石英音叉作为声波探测元件,获得的检测极限为6.25×10~(-4)(体积分数),归一化噪声等效吸收系数为4.18×10~(-7)cm~(-1).W·Hz~(-1/2).  相似文献   

15.
The uses of optical fibers are numerous, and over the past few decades, they have extended from optical fiber communications to a wide variety of sensing applications. In particular, fiber Bragg grating(FBG) sensors inscribed in single-mode optical fibers offer significant advantages over more conventional electrical sensors and have been successfully deployed in many different industries. In this Review, we review the applications of intrinsic FBG pressure and flow sensors in oil and gas and the deployment of FBG sensing networks in railways.The promising prospect of using polymer FBGs in wearable medical devices is also described.  相似文献   

16.
针对消逝场传感器的不足,提出了一种传感介质处于波导芯层,且以超高阶导模为探针的光波导振荡场传感器.由于其波导芯层处于功率密度极高的振荡场区域,而超高阶导模又具有对芯层参数极为灵敏的性质,因此这种新型传感器的灵敏度大大增强.实现了超越消逝场传感器灵敏度极限值几个量级的位移传感器.  相似文献   

17.
Evanescent wave configuration has been extensively used in the development of fiber-optic sensor for different biomedical applications. In the present investigation we have theoretically proposed the designing of single-mode and multimode optical fiber sensing probes, which can be prepared by removing a few centimeters of cladding near the distal end of the step index optical fiber. In this theoretical study, we found that the removal of cladding causes V-number mismatching and this has led to the loss of signal acquisition from the sensing region. Therefore, to minimize these losses we have proposed to reduce the radius by step etch and tapering technique. It was found that step etching and tapering enhances the strength and penetration depth of the evanescent wave significantly.  相似文献   

18.
D-shaped optical fiber microwire (OFM) devices are investigated theoretically. They can be obtained by wrapping OFMs on removable rods or laying the OFMs on disposable substrates. Optical wave guiding properties of these devices are discussed with numerical simulations. Dispersion properties of OFMs with different radii are studied as well. A grating-based D-shaped OFM is proposed for sensing applications. The corresponding sensitivity could reach 1100 nm/RIU (refractive index unit) due to its large outside evanescent field.  相似文献   

19.
In this article design and operation of a plastic optical fiber (POF) sensor based on the unconventional light leakage from one fiber to another one causing intensity modulation are presented. The dominant loss mechanism was found to be the evanescent loss and based on this phenomenon the optical fiber sensor was designed. The penetration depth of evanescent wave as a function of different refractive index of cladding was calculated. Operation of this sensor was tested as a liquid level sensor for different liquids and the experimental results are compared. The dry (air interface layer) and wet output (liquid interface layer) signals for this probe were measured for a series of measurements and important factors concerning sensor operation are described. The precision of measured values, reproducibility of the results (1.35% error), and the stability of sensing operation as a function of time at different launching powers are also reported (0.85% error). The reported results for this design are promising and verify the successful operation of such a device as a liquid level probe and also as an on/off level switch.  相似文献   

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