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Design of a Surface-Plasmon-Resonance Sensor Based on a Microstructured Optical Fiber with Annular-Shaped Holes
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作者 祝远锋 陈明阳 +2 位作者 王华 张永康 杨继昌 《Plasma Science and Technology》 SCIE EI CAS CSCD 2014年第9期867-872,共6页
A novel design is proposed for highly sensitive surface-plasmon-resonance sensors. The sensor is based on a microstructured optical fiber with two layers of annular-shaped holes. A gold layer is deposited on the inner... A novel design is proposed for highly sensitive surface-plasmon-resonance sensors. The sensor is based on a microstructured optical fiber with two layers of annular-shaped holes. A gold layer is deposited on the inner surface of the second hole-layer, in which the holes have several micrometers thickness in size, facilitating analyte infiltration and metal layer deposition. In the first layer of holes, the sector-ring^shaped arms, used as supporting strips, are utilized to tune the resonance depth of the sensor. Numerical results indicate that the sensor operation wavelength can be tuned across the C+L-band. The spectral sensitivity of 1.0.104 nm. RIU-1 order of magnitude and a detection limit of 1.0.10-4 RIU order are demonstrated over a wide range of analyte refractive index from 1.320 to 1.335. 展开更多
关键词 microstructured optical fiber surface-plasmon-resonance spectral sensitivity
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Characteristics of Bragg Gratings in All-Solid Photonic Bandgap Fiber
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作者 Bai-Ou Guan Zhi Wang +1 位作者 Yang Zhang Da Chen 《Journal of Electronic Science and Technology of China》 2008年第4期438-441,共4页
We report on fiber Bragg gratings in all-solid photonie bandgap fiber that was composed of a triangular array of high-index Ge-doped rods in pure silica background with fluorine-doped index-depressed layer surrounding... We report on fiber Bragg gratings in all-solid photonie bandgap fiber that was composed of a triangular array of high-index Ge-doped rods in pure silica background with fluorine-doped index-depressed layer surrounding the Ge-doped rod. Fiber Bragg gratings were photowritten with 193 nm ArF excimer laser and characterized for their response to strain, temperature, bending, and torsion. These gratings couple light from the forward core mode to not only backward core mode but also backward rod modes. This results in multiple resonance peaks in the reflection spectrum. All resonance wavelengths exhibited the same temperature and strain response with coefficient similar to that of Bragg gratings in standard single-mode fiber. The strength of the resonance peaks corresponding to the backward rod modes showed high sensitivity to bending and torsion. 展开更多
关键词 fiber Bragg gratings fiber optic sensors microstructured optic fibers photonic bandgap fibers.
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Lab-on-Fiber Technology: a New Avenue for Optical Nanosensors 被引量:7
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作者 Marco CONSALES Marco PISCO Andrea CUSANO 《Photonic Sensors》 SCIE EI CAS 2012年第4期289-314,共26页
The "lab-on-fiber" concept envisions novel and highly functionalized technological platforms completely integrated in a single optical fiber that would allow the development of advanced devices, components and sub-s... The "lab-on-fiber" concept envisions novel and highly functionalized technological platforms completely integrated in a single optical fiber that would allow the development of advanced devices, components and sub-systems to be incorporated in modem optical systems for communication and sensing applications. The realization of integrated optical fiber devices requires that several structures and materials at nano- and micro-scale are constructed, embedded and connected all together to provide the necessary physical connections and light-matter interactions. This paper reviews the strategies, the main achievements and related devices in the lab-on-fiber roadmap discussing perspectives and challenges that lie ahead. 展开更多
关键词 Lab-on-fiber all-in-fiber devices optical fiber sensors and devices microstructured fiber Bragg gratings microstructured optical fibers multimaterial and multifunctional fibers
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Deep-learning cell imaging through Anderson localizing optical fiber 被引量:4
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作者 Jian Zhao Yangyang Sun +5 位作者 Hongbo Zhu Zheyuan Zhu Jose E.Antonio-Lopez Rodrigo Amezcua Correa Shuo Pang Axel Schulzgen 《Advanced Photonics》 EI CSCD 2019年第6期7-18,共12页
We demonstrate a deep-learning-based fiber imaging system that can transfer real-time artifact-free cell images through a meter-long Anderson localizing optical fiber.The cell samples are illuminated by an incoherent ... We demonstrate a deep-learning-based fiber imaging system that can transfer real-time artifact-free cell images through a meter-long Anderson localizing optical fiber.The cell samples are illuminated by an incoherent LED light source.A deep convolutional neural network is applied to the image reconstruction process.The network training uses data generated by a setup with straight fiber at room temperature(∼20°C)but can be utilized directly for high-fidelity reconstruction of cell images that are transported through fiber with a few degrees bend or fiber with segments heated up to 50°C.In addition,cell images located several millimeters away from the bare fiber end can be transported and recovered successfully without the assistance of distal optics.We provide evidence that the trained neural network is able to transfer its learning to recover images of cells featuring very different morphologies and classes that are never“seen”during the training process. 展开更多
关键词 fiber imaging cell imaging deep learning microstructured optical fiber transverse Anderson localization.
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A Kind of Low Loss Birefringent Photonic Crystal Fibre with Increasing-Diameter Air-Holes 被引量:1
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作者 李曙光 刘晓东 +1 位作者 周桂耀 侯蓝田 《Chinese Physics Letters》 SCIE CAS CSCD 2005年第11期2855-2857,共3页
We report the results of our investigation on the loss property of a birefringent photonic crystal fibre (PCF) based on a particular periodic arrangement of air-holes and pure silica. The structure of the birefringe... We report the results of our investigation on the loss property of a birefringent photonic crystal fibre (PCF) based on a particular periodic arrangement of air-holes and pure silica. The structure of the birefringent PCF, whose air-hole diameter in one ring is always larger than the next inner ring, presents an obviously low confinement loss than the one whose air-hole (except those on the horizontal line) diameter is constant. It is shown from numerical results that a four-ring PCF with birefringenee B=5×10^-4 and fast axis confinement loss of 4.5×10^-3 dB/km at wavelength of 1.55μm can be designed. 展开更多
关键词 microstructureD optical fiberS FEMTOSECOND LASER-PULSES SUPERCONTINUUMGENERATION MULTIPOLE METHOD BANDGAP fiber DISPERSION PROPERTY MODE
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Grating Writing in Structured Optical Fibers
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作者 John CANNING Nathaniel GROOTHOFF +4 位作者 Kevin COOK Michael STEVENSON John HOLDSWORTH Matthieu LANCRY Bertrand POUMELLEC 《Photonic Sensors》 SCIE EI CAS 2011年第3期199-203,共5页
Grating writing in structured optical fibers is reviewed. Various laser sources have been used including UV and near IR nanosecond and femtosecond lasers, each enabling different material processing regimes. The issue... Grating writing in structured optical fibers is reviewed. Various laser sources have been used including UV and near IR nanosecond and femtosecond lasers, each enabling different material processing regimes. The issue of scattering is modeled through simulation and compared with experiment. Good agreement has been established. 展开更多
关键词 GRATINGS structured optical fibers Fresnel fibers photonic crystal fibers microstructured optical fibers sensors
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Multi-direction bending sensing based on spot pattern demodulation of dual-hole fiber
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作者 李波瑶 梁瑶瑶 +2 位作者 谢仲业 左小杰 孙敬华 《Chinese Optics Letters》 SCIE EI CAS CSCD 2023年第12期92-96,共5页
A multi-direction bending sensor based on spot pattern demodulation of a dual-hole fiber(DHF)is proposed.By using the interference and scattering in a DHF,the related multidirectional variations can be captured by the... A multi-direction bending sensor based on spot pattern demodulation of a dual-hole fiber(DHF)is proposed.By using the interference and scattering in a DHF,the related multidirectional variations can be captured by the optical field.Furthermore,the multi-directional bending characteristics of the fiber are quantitatively described by the pattern of the output light spot,achieving multidirectional bending sensing.In addition,considering the subtle changes in the deformation patterns over time,a convolutional neural network(CNN)model based on deep learning is introduced for accurate recognition and prediction of the bending angle.The experimental results show that the sensor can perceive different bending angles in four directions.These outstanding results indicate that the multi-directional bending sensor based on dual-hole interference pattern decoding has potential applications in multi-directional quantitative sensing and artificial intelligence perception. 展开更多
关键词 microstructured optical fiber fiber device bending sensor
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Spectral Absorption Gas Sensor Based on Anti-Resonant Reflecting Optical Waveguide 被引量:1
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作者 Haihu YU Yu ZHENG +2 位作者 Huiyong GUO Beibei CAO Huifeng WEI 《Photonic Sensors》 SCIE EI CAS 2014年第2期128-131,共4页
An air-silica microstructure optical fiber based on the anti-resonant reflecting optical waveguide (ARROW) principle was used to develop a spectral absorption gas sensor. The ARROW fiber has an air core and an air c... An air-silica microstructure optical fiber based on the anti-resonant reflecting optical waveguide (ARROW) principle was used to develop a spectral absorption gas sensor. The ARROW fiber has an air core and an air cladding layer. An ARROW fiber with a length of 725mm was used to construct a sensing system to detect acetylene gas. The gas was injected into the fiber from one end of the fiber. The transmission spectra were collected using an optical spectrum analyzer. The results indicate that the system can detect the gas of different concentrations and has the good system linearity. The response time of the system is about 200 s. 展开更多
关键词 microstructure optical fiber ARROW fiber gas sensor spectrum absorption acetylene gas
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Recent Progress in Fiber Optofluidic Lasing and Sensing 被引量:1
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作者 Xi YANG Chaoyang GONG +3 位作者 Yiling LIU Yunjiang RAO Mateusz SMIETANA Yuan GONG 《Photonic Sensors》 SCIE EI CSCD 2021年第2期262-278,共17页
Fiber optofluidic laser(FOFL)integrates optical fiber microcavity and microfluidic channel and provides many unique advantages for sensing applications.FOFLs not only inherit the advantages of lasers such as high sens... Fiber optofluidic laser(FOFL)integrates optical fiber microcavity and microfluidic channel and provides many unique advantages for sensing applications.FOFLs not only inherit the advantages of lasers such as high sensitivity,high signal-to-noise ratio,and narrow linewidth,but also hold the unique features of optical fiber,including ease of integration,high repeatability,and low cost.With the development of new fiber structures and fabrication technologies,FOFLs become an important branch of optical fiber sensors,especially for application in biochemical detection.In this paper,the recent progress on FOFL is reviewed.We focuse mainly on the optical fiber resonators,gain medium,and the emerging sen sing applicatio ns.The prospects for FOFL are also discussed.We believe that the FOFL sensor provides a promising technology for biomedical analysis and environmental monitoring. 展开更多
关键词 optical fiber sensors optofluidic laser microstructured optical fiber optical microcavity biochemical sensors
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