期刊文献+
共找到213篇文章
< 1 2 11 >
每页显示 20 50 100
The Design of Bending Long Period of Photonic Crystal Fiber Grating Sensors
1
作者 Xianlun Yu Weidong Gao +1 位作者 Yong Qu Shunjun Shu 《Optics and Photonics Journal》 2016年第8期120-126,共8页
The bending photonic crystal fiber grating sensor is an important role in underwater monitoring and fire alarm systems. It is studied that the resonant wavelength expression of bending long period photonic crystal fib... The bending photonic crystal fiber grating sensor is an important role in underwater monitoring and fire alarm systems. It is studied that the resonant wavelength expression of bending long period photonic crystal fiber gratings is deduced, it is designed that a bending long period photonic crystal fiber grating sensor system, it is calculated in theory that between the bending long period photonic crystal fiber gratings sensor resonance wavelength and the grating period and the bending strain. The result is shown by calculating and analysing in theory, the grating curvature is increased by the increase of the bending strain of the grating, and the resonance wavelength of the grating sensor is drifted, the drift amount is increased, one in this grating, the drifted amount of the resonant wavelength is 0.014 nm. 展开更多
关键词 fiber Optics photonic crystal fiber photonic crystal fiber Grating Bending sensor
下载PDF
Refractive index sensor based on high-order surface plasmon resonance in gold nanofilm coated photonic crystal fiber
2
作者 Zhen-Kai Fan Shao-Bo Fang +1 位作者 Shu-Guang Li Zhi-Yi Wei 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第9期212-219,共8页
We propose a novel kind of wide-range refractive index optical sensor based on photonic crystal fiber(PCF) covered with nano-ring gold film.The refractive index sensing performance of the PCF sensor is analyzed and si... We propose a novel kind of wide-range refractive index optical sensor based on photonic crystal fiber(PCF) covered with nano-ring gold film.The refractive index sensing performance of the PCF sensor is analyzed and simulated by the finite element method(FEM).The refractive index liquid is infiltrated into the cladding air hole of the PCF.By comparing the sensing performance of two kinds of photonic crystal fiber structures, a wide range and high sensitivity structure is optimized.The surface plasmon resonance(SPR) excitation material is chose as gold, and large gold nanorings are embedded around the first cladding air hole of the PCF.The higher order surface plasmon modes are generated in this designed optical fiber structure.The resonance coupling between the fundamental mode and the 5 th order surface plasmon polariton(SPP)modes is excited when the phase matching condition is matched.Therefore, the 3 rd loss peaks appear obvious red-shift with the increase of the analyte refractive index, which shows a remarkable polynomial fitting law.The fitnesses of two structures are 0.99 and 0.98, respectively.When the range of refractive indices is from 1.40 to 1.43, the two kinds of sensors have high linear sensitivities of 1604 nm/RIU and 3978 nm/RIU, respectively. 展开更多
关键词 surface PLASMON RESONANCE photonic crystal fiber sensor
下载PDF
Tunable and highly sensitive temperature sensor based on graphene photonic crystal fiber
3
作者 Xu Cheng Xu Zhou +6 位作者 Chen Huang Can Liu Chaojie Ma Hao Hong Wentao Yu Kaihui Liu Zhongfan Liu 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第11期136-140,共5页
Optical fiber temperature sensors have been widely employed in enormous areas ranging from electric power industry,medical treatment,ocean dynamics to aerospace.Recently,graphene optical fiber temperature sensors attr... Optical fiber temperature sensors have been widely employed in enormous areas ranging from electric power industry,medical treatment,ocean dynamics to aerospace.Recently,graphene optical fiber temperature sensors attract tremendous attention for their merits of simple structure and direct power detecting ability.However,these sensors based on transfer techniques still have limitations in the relatively low sensitivity or distortion of the transmission characteristics,due to the unsuitable Fermi level of graphene and the destruction of fiber structure,respectively.Here,we propose a tunable and highly sensitive temperature sensor based on graphene photonic crystal fiber(Gr-PCF)with the non-destructive integration of graphene into the holes of PCF.This hybrid structure promises the intact fiber structure and transmission mode,which efficiently enhances the temperature detection ability of graphene.From our simulation,we find that the temperature sensitivity can be electrically tuned over four orders of magnitude and achieve up to~3.34×10^(-3) dB/(cm·℃)when the graphene Fermi level is~35 meV higher than half the incident photon energy.Additionally,this sensitivity can be further improved by~10 times through optimizing the PCF structure(such as the fiber hole diameter)to enhance the light–matter interaction.Our results provide a new way for the design of the highly sensitive temperature sensors and broaden applications in all-fiber optoelectronic devices. 展开更多
关键词 GRAPHENE photonic crystal fiber temperature sensor high sensitivity Fermi level
下载PDF
High sensitivity plasmonic temperature sensor based on a side-polished photonic crystal fiber
4
作者 Zhigang Gao Xili Jing +2 位作者 Yundong Liu Hailiang Chen Shuguang Li 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第2期348-354,共7页
A high sensitivity plasmonic temperature sensor based on a side-polished photonic crystal fiber is proposed in this work.In order to achieve high sensitivity and high stability,the gold layer is coated on the side-pol... A high sensitivity plasmonic temperature sensor based on a side-polished photonic crystal fiber is proposed in this work.In order to achieve high sensitivity and high stability,the gold layer is coated on the side-polished photonic crystal fiber to support surface plasmon resonance.The mixture of ethanol and chloroform is used as the thermosensitive liquid.The performances of the proposed temperature sensor were investigated by the finite element method(FEM).Simulation results indicate that the sensitivity of the temperature sensor is as high as 7.82 nm/℃.It has good linearity(R;=0.99803),the resolution of 1.1×10;℃,and the amplitude sensitivity of 0.1008℃;.In addition,the sizes of the small air hole and polishing depth have little influence on the sensitivity.Therefore,the proposed sensor shows a high structure tolerance.The excellent performance and high structure tolerance of the sensor make it an appropriate choice for temperature measurement. 展开更多
关键词 photonic crystal fiber sensorS surface plasmon
下载PDF
High sensitivity dual core photonic crystal fiber sensor for simultaneous detection of two samples
5
作者 Pibin Bing Guifang Wu +4 位作者 Qing Liu Zhongyang Li Lian Tan Hongtao Zhang Jianquan Yao 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第8期429-435,共7页
The optical control ability of photonic crystal fiber(PCF)is a distinctive property suitable for improving sensing and plasma performance.This article proposes a dual-core D-channel PCF sensor that can detect two samp... The optical control ability of photonic crystal fiber(PCF)is a distinctive property suitable for improving sensing and plasma performance.This article proposes a dual-core D-channel PCF sensor that can detect two samples simultaneously,which effectively solves the problems of coating difficulty and low wavelength sensitivity.The PCF has four layers of air holes,which dramatically reduces the optical fiber loss and is more conducive to the application of sensors in actual production.In addition,by introducing dual cores on the upper and lower sides of the central air hole,reducing the spacing between the core and the gold nanolayer,a stronger evanescent field can be generated in the cladding air hole.The optical fiber sensor can detect the refractive index of two samples simultaneously with a maximum sensitivity of 21300 nm/RIU.To the best of our knowledge,the sensitivity achieved in this work is the highest sensitivity with the dual sample synchronous detection sensors.The detection range of the refraction index is 1.35-1.41,and the resolution of the sensor is 4.695×10^(-6).Overall,the sensor will be suitable for medical detection,organic chemical sensing,analyte detection,and other fields. 展开更多
关键词 photonic crystal fiber surface plasma resonance sensor
下载PDF
Design of a Concentration Sensor Based on Photonic Crystal Fiber Placed between Two Single Mode Fibers
6
作者 Jitesh Kumar Verma Sonali Prava Dash Sukanta Kumar Tripathy 《Soft Nanoscience Letters》 2013年第4期36-38,共3页
We demonstrate the use of photonic crystal fiber (PCF) joined in between two single mode fibers (SMF) as a concentration sensor. To realize this, one micrometer length PCF of hexagonal lattice is sandwiched between tw... We demonstrate the use of photonic crystal fiber (PCF) joined in between two single mode fibers (SMF) as a concentration sensor. To realize this, one micrometer length PCF of hexagonal lattice is sandwiched between two SMF having one micrometer length each. To maximize the coupling between SMF and PCF, the core diameters are made equal. Then the output from a given input through this structure is analyzed with respect to different concentrations in the air holes of PCF using Finite Difference Time Domain (FDTD) method. It is found that the variation of electric field intensity at the output is linear with respect to concentration of alcohol. 展开更多
关键词 CONCENTRATION sensor FDTD Method photonic crystal fiber
下载PDF
On the Validity of the Effective Index Method for Long Period Grating Photonic Crystal Fibers
7
作者 Dhia Khadri Walid Belhadj +2 位作者 Douha Gamra Fathi AbdelMalek Habib Bouchriha 《Materials Sciences and Applications》 2012年第5期310-316,共7页
This paper focuses on the investigation of modal characteristics and sensing properties of long period grating photonic crystal fibers (LPG-PCFs). An improved effective index method is employed with an objective to st... This paper focuses on the investigation of modal characteristics and sensing properties of long period grating photonic crystal fibers (LPG-PCFs). An improved effective index method is employed with an objective to study its limitations for various designs of LPG-PCFs. Results so obtained with the above method are compared with the corresponding values of multiple multipole (MMP) method results which points the range of validity and applicability of the improved effective index method to LPG-PCFs. It is shown that this method is excellent when the surrounding media is assumed to be air. However, it becomes less accurate when the fiber is immersed into a liquid with a refractive index close to that of the cladding. 展开更多
关键词 Long Period GRATINGS photonic crystal fiber (LPG-PCF) Improved Effective Index MMP CLADDING Modes sensor Sensitivity
下载PDF
A Photonic Crystal Fiber Based Asymmetric Slotted Structured Highly Sensitive Refractive Index Plasmonic Biosensor
8
作者 Md. Arafat Rahman Tanvir Ahmed +1 位作者 Md. Ismail Haque Md. Shamim Anower 《Journal of Sensor Technology》 2022年第1期1-17,共17页
Surface plasmon resonance (SPR) sensors have grown in popularity owing to their sensitivity, precision, and capacity for a variety of applications, including detection, monitoring, and sensing, among others. Sensitivi... Surface plasmon resonance (SPR) sensors have grown in popularity owing to their sensitivity, precision, and capacity for a variety of applications, including detection, monitoring, and sensing, among others. Sensitivity and resolution are two areas where this technology has room for development. A plasmonic biosensor based on an asymmetric slotted PCF structure with extremely high sensitivity has been described and theoretically investigated. This high performance sensor is constructed and completely characterized using finite element method in COMSOL Multiphysics software environment. Sensitivity and resolution are analyzed as performance parameters for the proposed sensor. Numerical simulation exhibits the maximum wavelength-sensitivity of 1100 nm/RIU with 9.09 × 10<sup>-6</sup> RIU resolution in the broad measurement range of refractive index from 1.30 to 1.44. A polarization controller can be used to fine-tune this extremely sensitive and wide-ranging refractive index sensor to fulfil a variety of practical needs. This is performed with the consideration of the variation in the refractive index (RI) of the analyte channels. In comparison with earlier PCF-based sensors, the fiber design structure is basic, symmetrical, simple to produce, and cost-effective. Because of the asymmetric air holes and higher sensitivities of the refractive index detector, it is possible to identify biomolecules, biochemicals and other analytes. 展开更多
关键词 Surface Plasmon Resonance (SPR) sensor High Sensitivity photonic crystal fiber (PCF) Optical fiber sensor
下载PDF
Numerical analysis of a photonic crystal fiber based on two polarized modes for biosensing applications 被引量:3
9
作者 秦伟 李曙光 +2 位作者 薛建荣 辛旭军 张磊 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第7期251-256,共6页
This paper presents a theoretical study on a photonic crystal fiber plasmonic refractive index biosensor. The proposed photonic crystal fiber sensor introduces the concept of simultaneous detection with the linearly p... This paper presents a theoretical study on a photonic crystal fiber plasmonic refractive index biosensor. The proposed photonic crystal fiber sensor introduces the concept of simultaneous detection with the linearly polarized and radially polarized modes because the sensing performance of the sensor based on both modes is relatively high, which will be useful for selecting the modes to make the detection accurately. The sharp single resonant peaks of the linearly polarized mode and radially polarized mode, are stronger and more sensitive to the variation of analyte refractive index than that of any other polarized mode in this kind of photonic crystal fiber. For linearly polarized mode and radially polarized mode, the maximum sensitivities of 10448.5nm per refractive index unit and 8230.7nm per refractive index unit can be obtained, as well as 949.8 and 791.4 for figure of merits in the sensing range of 1.33-1.45, respectively. Compared with the conventional Au-metalized surface plasmon resonance sensors, our device is better and can be applied as a biosensor. 展开更多
关键词 photonic crystal fiber sensorS surface plasmon
下载PDF
Gamma-radiation effects in pure-silica-core photonic crystal fiber 被引量:1
10
作者 蔡伟 宋凝芳 +4 位作者 金靖 宋镜明 李伟 罗文勇 徐小斌 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第11期258-263,共6页
We investigated the steady state gamma-ray radiation response of pure-silica-core photonic crystal fibers(PSC-PCFs)under an accumulated dose of 500 Gy and a dose rate of 2.38 Gy/min. The radiation-induced attenuatio... We investigated the steady state gamma-ray radiation response of pure-silica-core photonic crystal fibers(PSC-PCFs)under an accumulated dose of 500 Gy and a dose rate of 2.38 Gy/min. The radiation-induced attenuation(RIA) spectra in the near-infrared region from 800 nm to 1700 nm were obtained. We find that the RIA at 1550 nm is related with hydroxyl(OH^-) absorption defects in addition to the identified self-trapped hole(STH) defects. Moreover, it is proposed and demonstrated that reduced OH^-absorption defects can decrease the RIA at 1550 nm. The RIA at 1550 nm has effectively declined from 27.7 d B/km to 3.0 dB/km through fabrication improvement. Preliminary explanations based on the unique fabrication processes were given to interpret the RIA characteristics of PSC-PCFs. The results show that the PSC-PCFs,which offer great advantages over conventional fibers, are promising and applicable to fiber sensors in harsh environments. 展开更多
关键词 photonic crystal fibers radiation-induced attenuation color centers fiber optics sensors
下载PDF
Fiber Bragg Gratings in Small-Core Ge-Doped Photonic Crystal Fibers 被引量:1
11
作者 Yiping Wang Hartmut Bartelt +5 位作者 Wolfgang Ecke Reinhardt Willsch Jens Kobelke Michael Kautz Sven Brueckner Mantled Rothhardt 《Journal of Electronic Science and Technology of China》 2008年第4期429-433,共5页
This paper reports fiber Bragg gratings (FBGs) inscribed in a small-core Ge-doped photonic crystal fibers with a UV laser and a Talbot interferometer. The responses of such FBGs to temper- ature, strain, bending, an... This paper reports fiber Bragg gratings (FBGs) inscribed in a small-core Ge-doped photonic crystal fibers with a UV laser and a Talbot interferometer. The responses of such FBGs to temper- ature, strain, bending, and transverse-loading were systematically investigated. The Bragg wavelength of the FBGs shifts toward longer wavelengths with increasing temperature, tensile strain, and transverse-loading. The bending and transverse- loading properties of the FBGs are sensitive to the fiber orientations. 展开更多
关键词 fiber Bragg gratings photonic crystal fibers optical fiber sensors.
下载PDF
Propagation characteristics of photonic crystal fibers selectively filled with ionic liquid
12
作者 Xiaoqi Liu Yange Liu Zhi Wang 《Nanotechnology and Precision Engineering》 CAS CSCD 2021年第1期1-6,共6页
We present a numerical and experimental study of the propagation characteristics of photonic crystal fibers(PCFs)selectively filled with ionic liquid(IL;1-butyl-3-methylimidazolium iodine).Three types of IL-filled PCF... We present a numerical and experimental study of the propagation characteristics of photonic crystal fibers(PCFs)selectively filled with ionic liquid(IL;1-butyl-3-methylimidazolium iodine).Three types of IL-filled PCF are investigated:one with all air holes filled,one with an IL-filled air hole in the second ring,and one with an IL-filled air hole in the third ring.The results show that the third type of IL-filled PCF is the most sensitive to temperature;the sensitivity of resonant dips between the LP01 and LP21 modes is−2.9 nm/XC.Moreover,the intensity of the resonant dips changes with the polarization angle of the light source;the sensitivity is−0.79 dB per unit polarization angle.Based on this property,IL-filled PCFs with different utilities can be realized by changing the filling position flexibly.Consequently,IL-filled PCFs can be used under flexible conditions and controllable temperatures to create a compact polarization-angle sensor. 展开更多
关键词 photonic crystal fiber Ionic liquid Optical sensor POLARIZATION
下载PDF
Photonic crystal fiber Mach-Zehnder interferometer with microholes ablated by a femtosecond laser for refractive index sensing
13
作者 吴鸿宾 赵龙江 +1 位作者 王鹏 曹志涛 《Journal of Beijing Institute of Technology》 EI CAS 2016年第1期77-80,共4页
A new structure of the photonic crystal fiber(PCF)based Mach-Zednder interferometer(MZI)is fabricated and presented.The structure has microholes ablated by a femtosecond laser.The fringe visibility can be enhanced... A new structure of the photonic crystal fiber(PCF)based Mach-Zednder interferometer(MZI)is fabricated and presented.The structure has microholes ablated by a femtosecond laser.The fringe visibility can be enhanced more than 10 dB compared with the interferometer without a microhole.The interferometer is characterized by sodium chloride solutions for refractive index(RI)sensing.The RI sensitivities are greatly increased by the hole fabrication since it directly changes the cladding modes of the PCF.For the interferometer sensor with two holes,the RI sensitivity is 157.74 nm/RIU,which is 5 times than that of the sensor without a microhole.Microholes ablation with a femtosecond laser on PCF can increase the sensor's sensitivity dramatically.Femtosecond laser has a wide application prospect in the field of performance improvement of the sensors. 展开更多
关键词 photonic crystal fiber(PCF)sensor fs laser fabrication refractive index sensing
下载PDF
Preparation of panda-shaped photonic crystal fibers with and without silver wire
14
作者 娄俊波 杨永辉 +1 位作者 曲强 李曙光 《Chinese Optics Letters》 SCIE EI CAS CSCD 2024年第5期29-35,共7页
A method of preparing panda-shaped photonic crystal fibers(PCFs)based on secondary drawing technology is proposed in this paper.The secondary drawing can not only reduce fiber diameter but also reduce core size by add... A method of preparing panda-shaped photonic crystal fibers(PCFs)based on secondary drawing technology is proposed in this paper.The secondary drawing can not only reduce fiber diameter but also reduce core size by adding a glass sleeve.Silver-filled and non-silver-filled panda PCFs are prepared.The two ends of silver-filled panda PCF are connected with a broadband light source and a spectrometer,respectively,and the surface plasmon resonance phenomenon is detected.The secondary drawing technology provides a meaningful reference for the preparation of PCF in the future,and the prepared silver-filled panda PCF can be prepared into an optical fiber filter. 展开更多
关键词 photonic crystal fiber secondary drawing technology air pressure regulation surface plasmon resonance
原文传递
Refractive Index and Temperature Sensor Using HC-1550 Infiltrating by Different Liquid Crystal
15
作者 Suha Mousa Khorsheed Alawsi Mariam Abdul Jabbar 《Optics and Photonics Journal》 2018年第3期29-39,共11页
Photonic crystal fiber (PCF) is employed as a refractive index sensor (RIS) for solving a lot of problems in biological, physicochemical, medical, engineering fields and many environmental challenges, where it is used... Photonic crystal fiber (PCF) is employed as a refractive index sensor (RIS) for solving a lot of problems in biological, physicochemical, medical, engineering fields and many environmental challenges, where it is used in many industries of food, medicines, chemical materials and material diagnosis. The kind of the PCFs was HC-1550 with three wavelengths of laser source were used;638 nm, 850 nm, and 1550 nm that are useful for recording the intended transmitted signal intensity. Therefore, the measured RI was in the range (1.469 - 1.455 RIU) at the temperature range (36 - 70)&deg;C for the EBBA and it was (1.621 - 1.612 RIU) at the temperature range (22 - 42)&deg;C for the MBBA. The results showed that the highest RI sensitivity was 96.335 dBm/RIU for the HC-1550 infiltrated with MBBA using the laser of wavelength 638 nm, Also, the highest temperature sensitivity was 0.2505 dBm/&deg;C for empty HC-1550 using the laser of wavelength 1550 nm. 展开更多
关键词 Refractive INDEX sensor Temperature sensor photonic crystal fiber Liquid crystal
下载PDF
D型环光子晶体光纤表面等离子体共振传感器
16
作者 刘旭安 杨克成 +3 位作者 胡新广 姜小刚 罗伟漩 陈达如 《激光与红外》 CAS CSCD 北大核心 2024年第5期835-840,共6页
提出了一种中红外波段宽范围低折射率检测的D型环双芯光子晶体光纤表面等离子体共振传感器。该结构为一个D型环,并在其内外表面都沉积一层金属层。采用全矢量有限元方法分析了该传感器的性能。结果表明,该传感器可以在中红外波段实现低... 提出了一种中红外波段宽范围低折射率检测的D型环双芯光子晶体光纤表面等离子体共振传感器。该结构为一个D型环,并在其内外表面都沉积一层金属层。采用全矢量有限元方法分析了该传感器的性能。结果表明,该传感器可以在中红外波段实现低折射率传感,并具有高传感灵敏度特性。分析物的折射率可检测范围为1.20~1.38,平均波长灵敏度和最大波长灵敏度可分别达到13717 nm/RIU和21150 nm/RIU,分辨率可达到1.94×10^(-5) RIU。该传感器可在化学、生物以及环境检测等领域有重要的应用。 展开更多
关键词 光纤传感器 光子晶体光纤 表面等离子体共振 波长灵敏度
下载PDF
Overview of refractive index sensors comprising photonic crystal fibers based on the surface plasmon resonance effect[Invited] 被引量:7
17
作者 Chao Liu Jingwei Lv +2 位作者 Wei Liu Famei Wang Paul K.Chu 《Chinese Optics Letters》 SCIE EI CAS CSCD 2021年第10期61-80,共20页
Optical fibers have been widely applied to telecommunication,imaging,lasers,and sensing.Among the different types of fibers,photonic crystal fibers(PCFs),also called microstructured optical fibers,characterized by air... Optical fibers have been widely applied to telecommunication,imaging,lasers,and sensing.Among the different types of fibers,photonic crystal fibers(PCFs),also called microstructured optical fibers,characterized by air holes arranged along the length of fibers have experienced tremendous advance due to their unique advantages.They are regarded as a desirable platform to excite surface plasmon resonance(SPR)because of easy realization of phase matching conditions between the fundamental core mode and the plasmonic mode,which plays a critical role in miniaturization and integration of SPR sensors.In this mini-review,the current status of PCF sensors based on SPR is summarized.The theory of SPR is discussed,and simulation methods for PCF-SPR sensors are described.The important parameters including the refractive index detection range,resonance wavelength,and spectral sensitivity responsible for the sensing properties of PCF-SPR sensors are reviewed.The fabrication and the comparison of performances are also illustrated,and,finally,the challenges and future perspectives are outlined. 展开更多
关键词 photonic crystal fibers surface plasmon resonance refractive index sensorS
原文传递
一种检测弱磁场的光纤传感器的研究与仿真
18
作者 赵欣瑜 江兴方 +1 位作者 阮志强 张磊 《应用光学》 CAS 北大核心 2024年第4期873-878,共6页
提出一种基于表面等离子共振的光子晶体光纤传感器,用于实时检测弱磁场强度变化。光子晶体光纤表面覆盖氮化硅和银薄膜,实现表面等离子共振,传感器外侧的磁流体用于感知磁场变化。针对磁场强度检测,基于折射率性能指标归纳了磁场与传感... 提出一种基于表面等离子共振的光子晶体光纤传感器,用于实时检测弱磁场强度变化。光子晶体光纤表面覆盖氮化硅和银薄膜,实现表面等离子共振,传感器外侧的磁流体用于感知磁场变化。针对磁场强度检测,基于折射率性能指标归纳了磁场与传感器性能指标。有限元方法的仿真结果表明,在80 Oe~1000 Oe磁场强度范围内,传感器波长灵敏度可达0.55 nm·Oe^(-1);此外,幅度灵敏度、分辨力、检测限、品质因数和拟合度分别达到了-0.107 Oe^(-1)、1.8×10^(-2)Oe、3.3×10^(-2)Oe~2·nm^(-1)、6.73×10^(-2)Oe^(-1)和0.99117。该传感器具备制作工艺简单、易于制造的特点,可以预见其在磁场检测的广阔前景。 展开更多
关键词 传感器 光子晶体光纤 表面等离子共振 磁场检测 有限元方法
下载PDF
基于表面等离子体共振技术的光子晶体光纤传感器研究
19
作者 马韬 漆琦 乌日娜 《科学与信息化》 2024年第7期126-128,132,共4页
为了实现对待测介质折射率的高灵敏度检测,设计并研究了一种基于表面等离子体共振技术的光子晶体光纤折射率传感器。该传感器的内外空气孔呈正六边形排列,在包层外壁上涂覆银-石墨烯纳米薄膜,通过纤芯基模和表面等离子体模的耦合程度来... 为了实现对待测介质折射率的高灵敏度检测,设计并研究了一种基于表面等离子体共振技术的光子晶体光纤折射率传感器。该传感器的内外空气孔呈正六边形排列,在包层外壁上涂覆银-石墨烯纳米薄膜,通过纤芯基模和表面等离子体模的耦合程度来检测周围环境的折射率变化。研究表明,该传感器可以实现折射率在1.37~1.38范围内的检测,最高灵敏度可达40000nm/RIU,分辨率可达4.17×10-5RIU。 展开更多
关键词 光子晶体光纤 表面等离子体共振 折射率传感器
下载PDF
基于光子晶体光纤的局部放电检测
20
作者 张海 徐广 +3 位作者 陈明 刘伟 何国斌 李建东 《激光与红外》 CAS CSCD 北大核心 2024年第7期1164-1171,共8页
局部放电检测对于保障高压电力系统的安全运行至关重要。本文提出了一种针对高压设备局部放电检测的表面等离子体共振D型光子晶体光纤传感器,该方案采用一种光致变色凝胶作为敏感单元,用于感知局部放电所产生的紫外线辐射。该凝胶的折... 局部放电检测对于保障高压电力系统的安全运行至关重要。本文提出了一种针对高压设备局部放电检测的表面等离子体共振D型光子晶体光纤传感器,该方案采用一种光致变色凝胶作为敏感单元,用于感知局部放电所产生的紫外线辐射。该凝胶的折射率会随辐射强度的变化而变化,从而影响光纤纤芯和表面等离激元模式之间的耦合共振波长。通过全矢量有限元法对传感器的性能进行了理论和仿真分析,并对传感器的几何参数进行了研究,以优化传感器的灵敏度,最后进行了实验验证。结果表明所设计传感器的灵敏度值可达2.4 nm/mW·cm^(-2)。该传感器结构简单、成本低廉,为光纤局部放电传感的研究提供了参考。 展开更多
关键词 光纤传感器 光子晶体光纤 局部放电检测 等离子激元
下载PDF
上一页 1 2 11 下一页 到第
使用帮助 返回顶部