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A historical overview of nano-optics:From near-field optics to plasmonics
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作者 邓妙怡 朱星 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期134-145,共12页
Nano-optics is an emergent research field in physics that appeared in the 1980s,which deals with light–matter optical interactions at the nanometer scale.In early studies of nano-optics,the main concern focus is to o... Nano-optics is an emergent research field in physics that appeared in the 1980s,which deals with light–matter optical interactions at the nanometer scale.In early studies of nano-optics,the main concern focus is to obtain higher optical resolution over the diffraction limit.The researches of near-field imaging and spectroscopy based on scanning near-field optical microscopy(SNOM)are developed.The exploration of improving SNOM probe for near-field detection leads to the emergence of surface plasmons.In the sense of resolution and wider application,there has been a significant transition from seeking higher resolution microscopy to plasmonic near-field modulations in the nano-optics community during the nano-optic development.Nowadays,studies of nano-optics prefer the investigation of plasmonics in different material systems.In this article,the history of the development of near-field optics is briefly reviewed.The difficulties of conventional SNOM to achieve higher resolution are discussed.As an alternative solution,surface plasmons have shown the advantages of higher resolution,wider application,and flexible nano-optical modulation for new devices.The typical studies in different periods are introduced and characteristics of nano-optics in each stage are analyzed.In this way,the evolution progress from near-field optics to plasmonics of nano-optics research is presented.The future development of nano-optics is discussed then. 展开更多
关键词 nano-optICS near-field optics surface plasmon plasmonic modulation
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Terahertz phononic crystal in plasmonic nanocavity
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作者 Zhenyao Li Haonan Chang +6 位作者 Jia-Min Lai Feilong Song Qifeng Yao Hanqing Liu Haiqiao Ni Zhichuan Niu Jun Zhang 《Journal of Semiconductors》 EI CAS CSCD 2023年第8期94-100,共7页
Interaction between photons and phonons in cavity optomechanical systems provides a new toolbox for quantum information technologies.A GaAs/AlAs pillar multi-optical mode microcavity optomechanical structure can obtai... Interaction between photons and phonons in cavity optomechanical systems provides a new toolbox for quantum information technologies.A GaAs/AlAs pillar multi-optical mode microcavity optomechanical structure can obtain phonons with ultra-high frequency(~THz).However,the optical field cannot be effectively restricted when the diameter of the GaAs/AlAs pillar microcavity decreases below the diffraction limit of light.Here,we design a system that combines Ag nanocav-ity with GaAs/AlAs phononic superlattices,where phonons with the frequency of 4.2 THz can be confined in a pillar with~4 nm diameter.The Q_(c)/V reaches 0.22 nm^(-3),which is~80 times that of the photonic crystal(PhC)nanobeam and~100 times that of the hybrid point-defect PhC bowtie plasmonic nanocavity,where Q_(c) is optical quality factor and V is mode volume.The optome-chanical single-photon coupling strength can reach 12 MHz,which is an order of magnitude larger than that of the PhC nanobeam.In addition,the mechanical zero-point fluctuation amplitude is 85 fm and the efficient mass is 0.27 zg,which is much smaller than the PhC nanobeam.The phononic superlattice-Ag nanocavity optomechanical devices hold great potential for applications in the field of integrated quantum optomechanics,quantum information,and terahertz-light transducer. 展开更多
关键词 OPTOMECHANICS phononic crystal Ag plasmonic nanocavity CONFINEMENT COUPLING
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Tunable ultra-wideband terahertz filter based on three-dimensional arrays of H-shaped plasmonic crystals 被引量:1
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作者 袁偲 徐世林 +3 位作者 姚建铨 赵晓蕾 曹小龙 吴亮 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第1期470-474,共5页
A face-to-face system of double-layer three-dimensional arrays of H-shaped plasmonic crystals is proposed, and its transmission and filtering properties are investigated in the terahertz regime. Simulation results sho... A face-to-face system of double-layer three-dimensional arrays of H-shaped plasmonic crystals is proposed, and its transmission and filtering properties are investigated in the terahertz regime. Simulation results show that our design has excellent filtering properties. It has an ultra-wide bandgap and passband with steep band-edges, and the transmittance of the passband and the forbidden band are very close to 1 and 0, respectively. As the distance between the two face-to-face plates increases, the resonance frequency exhibits a gradual blueshift from 0.88 THz to 1.30 THz. Therefore, we can dynamically control the bandwidths of bandgap and passband by adding a piezoelectric ceramic plate between the two crystal plates. Furthermore, the dispersion relations of modes and electric field distributions are presented to analyze the generation mechanisms of bandgaps and to explain the location of bandgaps and the frequency shift phenomenon. Due to the fact that our design can provide many resonant modes, the bandwidth of the bandgaps can be greatly broadened. This paper can serve as a valuable reference for the design of terahertz functional devices and three-dimensional terahertz metamaterials. 展开更多
关键词 TERAHERTZ wideband filter plasmonic crystal METAMATERIALS
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High sensitivity plasmonic temperature sensor based on a side-polished photonic crystal fiber
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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
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A Photonic Crystal Fiber Based Asymmetric Slotted Structured Highly Sensitive Refractive Index Plasmonic Biosensor
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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
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Refractive index sensor based on high-order surface plasmon resonance in gold nanofilm coated photonic crystal fiber
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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
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Giant enhancement of Kerr rotation in two-dimensional Bismuth iron garnet/Ag photonic crystals
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作者 梁红 刘欢 +3 位作者 张强 付淑芳 周胜 王选章 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第6期598-602,共5页
Kerr effects of two-dimensional (2D) Bismuth iron garnet (BIG)/Ag photonic crystals (PCs) combined magnetic and plasmonic functionalities is investigated with the effective medium theory. An analytical expressio... Kerr effects of two-dimensional (2D) Bismuth iron garnet (BIG)/Ag photonic crystals (PCs) combined magnetic and plasmonic functionalities is investigated with the effective medium theory. An analytical expression of Kerr rotation angles is derived, in which the effects of the surface pasmons polaritons (SPP) on magneto--optical (MO) activities are reflected. The largest enhancement of Kerr rotation up to now is demonstrated, which is improved three orders of magnitude compared with that of BIG film. When λ 〈 750 nm all of the reflection are over 10% for the arbitrary filling ratio fl, in addition, the enhancement of Kerr rotation angles are at least one order of magnitude. 展开更多
关键词 Kerr effects surface plasmons polaritons effective medium theory magnetophotonic crystals
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Theoretical simulation of a novel birefringent photonic crystal fiber with surface plasmon resonance around 1300 nm
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作者 李端明 周桂耀 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第3期226-230,共5页
In this paper, a novel birefringent photonic crystal fiber (PCF) with the silver-coated and liquid-filled air-holes along the vertical plane is designed. Simulation results show that the thickness of silver layer, t... In this paper, a novel birefringent photonic crystal fiber (PCF) with the silver-coated and liquid-filled air-holes along the vertical plane is designed. Simulation results show that the thickness of silver layer, the sizes of holes, and the refractive index of liquid strongly strengthen the gaps between two polarized directions. The surface plasmon resonance peak along y axis can be up to 675.8 dB/cm at 1.33μB. The proposed PCF has important application in polarization devices, such as filters and beam splitters. 展开更多
关键词 photonic crystal fiber (PCF) silver layer surface plasmon resonance
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Photonic-plasmonic hybrid microcavities: Physics and applications
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作者 Hongyu Zhang Wen Zhao +3 位作者 Yaotian Liu Jiali Chen Xinyue Wang Cuicui Lu 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第11期49-63,共15页
Photonic-plasmonic hybrid microcavities,which possess a higher figure of merit Q/V(the ratio of quality factor to mode volume)than that of pure photonic microcavities or pure plasmonic nano-antennas,play key roles in ... Photonic-plasmonic hybrid microcavities,which possess a higher figure of merit Q/V(the ratio of quality factor to mode volume)than that of pure photonic microcavities or pure plasmonic nano-antennas,play key roles in enhancing light–matter interaction.In this review,we summarize the typical photonic-plasmonic hybrid microcavities,such as photonic crystal microcavities combined with plasmonic nano-antenna,whispering gallery mode microcavities combined with plasmonic nano-antenna,and Fabry–Perot microcavities with plasmonic nano-antenna.The physics and applications of each hybrid photonic-plasmonic system are illustrated.The recent developments of topological photonic crystal microcavities and topological hybrid nano-cavities are also introduced,which demonstrates that topological microcavities can provide a robust platform for the realization of nanophotonic devices.This review can bring comprehensive physical insights of the hybrid system,and reveal that the hybrid system is a good platform for realizing strong light–matter interaction. 展开更多
关键词 hybrid microcavities photonic crystal plasmonic nano-antenna figure of merit Q/V
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A high-quality factor hybrid plasmonic nanocavity based on distributed Bragg reflectors
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作者 屠林林 张弛 +3 位作者 黄忠 Jason Yau 詹鹏 王振林 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第9期507-510,共4页
Herein,we propose a high-quality(Q) factor hybrid plasmonic nanocavity based on distributed Bragg reflectors(DBRs) with low propagation loss and extremely strong mode confinement.This hybrid plasmonic nanocavity i... Herein,we propose a high-quality(Q) factor hybrid plasmonic nanocavity based on distributed Bragg reflectors(DBRs) with low propagation loss and extremely strong mode confinement.This hybrid plasmonic nanocavity is composed of a high-index cylindrical nanowire separated from a metal surface possessing shallow DBRs gratings by a sufficiently thin low-index dielectric layer.The hybrid plasmonic nanocavity possesses advantages such as a high Purcell factor(Fp) of up to nearly 20000 and a gain threshold approaching 266 cm^(-1)at 1550 nm,promising a greater potential in deep sub-wavelength lasing applications. 展开更多
关键词 plasmonic nanocavity photonic crystal nanowire
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具有尖锐吸收截面和显著增强电场的等离激元-光子混合谐振腔
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作者 刘莹 朱泽斌 蒋立勇 《光子学报》 EI CAS CSCD 北大核心 2024年第5期215-224,共10页
研究了由二维光子晶体微腔和金纳米天线组成的等离激元-光子混合谐振腔中光学谐振腔对等离激元谐振腔的额外贡献。研究结果表明:与纯等离激元谐振腔相比,混合体系的吸收截面和电场强度均明显增强。特别地,混合谐振腔的吸收截面谱呈现出... 研究了由二维光子晶体微腔和金纳米天线组成的等离激元-光子混合谐振腔中光学谐振腔对等离激元谐振腔的额外贡献。研究结果表明:与纯等离激元谐振腔相比,混合体系的吸收截面和电场强度均明显增强。特别地,混合谐振腔的吸收截面谱呈现出类Fano线形和尖峰,可以通过改变金纳米天线的数量或金纳米天线与光子晶体微腔之间的共振波长失谐进行调制。此外,混合谐振腔的电场增强因子比金纳米天线高出3个数量级。可为光热探测和光谱增强研究提供新的平台。 展开更多
关键词 混合谐振腔 尖锐吸收截面 显著增强电场 表面等离激元 光子晶体
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D型环光子晶体光纤表面等离子体共振传感器
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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
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一种检测弱磁场的光纤传感器的研究与仿真
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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
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基于石墨烯Tamm等离子体激元的太赫兹强耦合效应
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作者 谢金霖 张天宇 胡旻 《太赫兹科学与电子信息学报》 2024年第4期373-377,393,共6页
设计了一种全新的一维石墨烯-光子晶体(PhC)复合谐振结构,使用传输矩阵法(TMM)对其所支持的太赫兹Tamm等离子体激元(TPP)和腔体模式(CM)之间的强耦合效应进行理论研究。研究表明,用于表征耦合强度的Rabi分裂能随着光子晶体周期数的减小... 设计了一种全新的一维石墨烯-光子晶体(PhC)复合谐振结构,使用传输矩阵法(TMM)对其所支持的太赫兹Tamm等离子体激元(TPP)和腔体模式(CM)之间的强耦合效应进行理论研究。研究表明,用于表征耦合强度的Rabi分裂能随着光子晶体周期数的减小而增大;改变间隔层和腔体厚度以及石墨烯的费米能级时,也会影响Rabi分裂能。最后通过入射角度对耦合模式进行主动调控,当入射角处于0°~60°时,耦合模式的特性与偏振无关。本文的研究结果为太赫兹强耦合效应的研究和应用提供了新的思路。 展开更多
关键词 Tamm等离子体激元 光子晶体 强耦合 Rabi分裂
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基于表面等离激元共振具有高消光比的光子晶体光纤偏振滤波器
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作者 钟文杰 唐锦 +1 位作者 蔡旭红 李邵辉 《汕头大学学报(自然科学版)》 2024年第3期3-11,F0002,共10页
本文提出一种新型光子晶体光纤偏振滤波器,利用有限元方法对其偏振滤波特性进行了模拟分析.该滤波器使用一矩形镀金空气孔取代常用的圆形空气孔,模拟结果证明这种结构可以改变纤心中传输的两个正交偏振模式在金属表面所激发的表面等离... 本文提出一种新型光子晶体光纤偏振滤波器,利用有限元方法对其偏振滤波特性进行了模拟分析.该滤波器使用一矩形镀金空气孔取代常用的圆形空气孔,模拟结果证明这种结构可以改变纤心中传输的两个正交偏振模式在金属表面所激发的表面等离激元共振波长之间的间隔及耦合效率,从而在一个偏振模式的约束损耗可忽略不计的情况下,另外一个偏振模式具有较大的约束损耗,实现偏振滤波.该设计思想不仅适应于本文的光子晶体光纤偏振滤波器,也可应用于其它光纤结构. 展开更多
关键词 光子晶体光纤 偏振滤波器 表面等离子共振
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基于表面等离子体共振技术的光子晶体光纤传感器研究
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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
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基于光子晶体光纤的局部放电检测
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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
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基于高双折射侧边抛磨光子晶体光纤的表面等离激元共振双参量传感器
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作者 裴俊凯 周青春 王颖 《江苏科技大学学报(自然科学版)》 CAS 2024年第1期111-118,共8页
利用表面等离激元共振(SPR)技术设计了一款高双折射光子晶体光纤(PCF)传感器,可以实现宽范围的双参量高灵敏度传感.采用侧边抛磨的结构,内部空气孔呈三角晶格排列.金纳米层涂覆在抛磨面直接与待测物接触作为测量折射率RI的通道,更加方... 利用表面等离激元共振(SPR)技术设计了一款高双折射光子晶体光纤(PCF)传感器,可以实现宽范围的双参量高灵敏度传感.采用侧边抛磨的结构,内部空气孔呈三角晶格排列.金纳米层涂覆在抛磨面直接与待测物接触作为测量折射率RI的通道,更加方便检测工作的进行,靠近纤芯的椭圆孔内充满氯仿用来探测温度.两个独立的通道以及由非对称引入的双折射可以确保独自测量折射率和温度的变化,解决了交叉灵敏度问题.借助全矢量有限元软件COMSOL Multiphysics,灵活使用散射边界条件可以很好的对光子晶体光纤传感器的光学特性进行数值分析研究.实验结果表明,文中提出的传感器可以测量折射率范围为1.32~1.39,温度范围是20~60℃,在500~1100 nm的波长范围内可以观察到明显的表面等离激元共振效应.为了进一步分析该结构的性能,对主要结构参数(抛光面金膜厚度m_(1)、Ta_(2)O_(5)厚度m_(2)、中心空气孔直径d1以及占空比)做了研究分析.仿真结果得到折射率传感下的平均波长灵敏度5700 nm/RIU,最大波长灵敏度13200 nm/RIU,最大振幅灵敏度818.44 RIU^(-1),传感器的折射率分辨率为1.75×10^(-5)RIU.温度传感范围为20~60℃,得到最大波长灵敏度为2.6 nm/℃,最大振幅灵敏度为0.363℃-1,以及传感器的温度分辨率为3.84×10^(-2)℃.该工作对于高灵敏度、实时、分布式、多参量测量SPR传感器的设计和实现具有指导意义. 展开更多
关键词 光子晶体光纤 表面等离激元共振 高双折射 折射率传感 温度传感
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基于D型光子晶体光纤的表面等离子体共振传感器
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作者 岳俊彤 王茜 梁英爽 《辽宁科技大学学报》 CAS 2024年第4期287-292,共6页
本文提出一种基于D型高灵敏度光子晶体光纤的表面等离子体共振低折射率传感器。D型光子晶体光纤结构更容易镀膜,且便于填充分析物,利用开口镀金结构能够更多激发等离激元。采用有限元法对其结构进行数值模拟,选择分析物折射率范围为1.2~... 本文提出一种基于D型高灵敏度光子晶体光纤的表面等离子体共振低折射率传感器。D型光子晶体光纤结构更容易镀膜,且便于填充分析物,利用开口镀金结构能够更多激发等离激元。采用有限元法对其结构进行数值模拟,选择分析物折射率范围为1.2~1.29,研究空气孔、开口直径、镀膜厚度等结构参数对传感器性能的影响,对其结构进行优化。当分析物折射率为1.29时,传感器最大灵敏度达到17000 nm/RIU,分辨率达到6.0×10^(-6) RIU。 展开更多
关键词 表面等离子体共振 光子晶体光纤 折射率传感器
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超宽折射率检测范围光子晶体光纤传感器
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作者 杨迎 董继宇 张树桓 《山西大同大学学报(自然科学版)》 2024年第3期40-44,共5页
表面等离子体共振(SPR)效应的光子晶体光纤(PCF)因其体积小、灵敏度高等明显优势而受到了广泛研究。然而,大多数现有传感器的折射率检测范围较窄,限制了其在工业领域的应用。为了解决这个问题,采用金作为等离子体材料,通过调整光子晶体... 表面等离子体共振(SPR)效应的光子晶体光纤(PCF)因其体积小、灵敏度高等明显优势而受到了广泛研究。然而,大多数现有传感器的折射率检测范围较窄,限制了其在工业领域的应用。为了解决这个问题,采用金作为等离子体材料,通过调整光子晶体光纤表面涂覆金膜的厚度和涂覆金膜弧形开口的尺寸,设计了一种具有超宽折射率检测范围的D型光子晶体光纤传感器,该传感器能够实现对折射率在1.30~1.42范围内的超宽传感检测。研究结果表明,通过适当调整金膜的厚度和弧形开口的尺寸,可以获得超宽折射率检测范围的光子晶体光纤传感器,为工业领域的应用提供了更广阔的空间。 展开更多
关键词 表面等离子体共振 光子晶体光纤 折射率检测范围
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