期刊文献+
共找到130,097篇文章
< 1 2 250 >
每页显示 20 50 100
Fabrication of 16W all-normal-dispersion mode-locked Yb-doped rod-type fiber laser with large-mode area
1
作者 吕志国 滕浩 +3 位作者 王立娜 王睿 王军利 魏志义 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第11期266-269,共4页
A mode-locked ytterbium-doped rod-type fiber laser with 85 ~tm core diameter is developed based on the nonlinear polarization evolution in an all-normal-dispersion ring cavity, in which a uniaxial birefringent plate i... A mode-locked ytterbium-doped rod-type fiber laser with 85 ~tm core diameter is developed based on the nonlinear polarization evolution in an all-normal-dispersion ring cavity, in which a uniaxial birefringent plate is used as the spectral filter. Average power up to 16 W is obtained at the repetition rate of 58 MHz, and the pulse duration is compressed to 182 fs with a grating-pair compressor. The output laser pulses show very good beam quality and power stability. 展开更多
关键词 diode pump rod-type fiber femtosecond mode-locking
原文传递
Effect of Argon Atmosphere Heat Treatment on Mechanical Properties and Microstructural Evolution of Shicolon-O_(9) SiC Fibers
2
作者 YUAN Wang HU Jianbao +3 位作者 ZHOU Liang KAN Yanmei ZHANG Xiangyu DONG Shaoming 《无机材料学报》 北大核心 2026年第1期119-128,共10页
Silicon carbide fibers are considered ideal reinforcing materials for ceramic matrix composites due to their excellent mechanical properties and high-temperature performance.Different types of fibers necessitate indiv... Silicon carbide fibers are considered ideal reinforcing materials for ceramic matrix composites due to their excellent mechanical properties and high-temperature performance.Different types of fibers necessitate individual investigation due to variations in their composition and fabrication processes.This study presents a comprehensive investigation into evolution of the mechanical properties,surface microstructure,and composition of Shicolon-O_(9) fibers subjected to argon heat treatment at temperatures ranging from 1300℃to 1700℃.The Shicolon-O_(9) fibers are composed of small-sizedβ-SiC grains,SiC_(x)O_(y) amorphous phase,and a minor amount of graphite microcrystals.Following treatment in an argon atmosphere at 1300℃,the fibers maintain a monofilament tensile strength of 3.620 GPa,corresponding to a retention of 98.32%.This strength diminishes to 2.875 GPa,equating to a retention of 78.08%,after treatment at 1500℃.The reduction in mechanical properties of the fibers can be ascribed to the decomposition of the amorphous phase and the growth ofβ-SiC grains.Furthermore,creep resistance is an essential factor influencing the long-term performance of composite materials.After treatment at temperatures above 1400℃,the high-temperature creep resistance of the fibers is significantly enhanced due to growth ofβ-SiC grains.This study offers valuable theoretical insights into high-temperature applications of second-generation fibers,contributing to an enhanced understanding of their performance under extreme conditions. 展开更多
关键词 Shicolon-O_(9)SiC fiber heat treatment mechanical property MICROSTRUCTURE
在线阅读 下载PDF
Broadband high-coherence supercontinuum in Al_(0.24)Ga_(0.76)As photonic crystal fibers
3
作者 XIA Yong-tao HOU Shang-lin +4 位作者 FENG Yun-long XIE Cai-jian LEI Jing-li WU Gang YAN Zu-yong 《中国光学(中英文)》 北大核心 2026年第1期164-178,共15页
An alternative elliptical and circle air-hole-assisted Al_(0.24)Ga_(0.76)As photonic crystal fiber(PCF)was proposed for generating broadband high-coherence mid-infrared supercontinuum,and the dispersion,effect-ive mod... An alternative elliptical and circle air-hole-assisted Al_(0.24)Ga_(0.76)As photonic crystal fiber(PCF)was proposed for generating broadband high-coherence mid-infrared supercontinuum,and the dispersion,effect-ive mode area and nonlinear coefficient were investigated by using finite element method(FEM),the evolu-tion of optical pulses propagating along the fiber was simulated,and the supercontinuum and the coherence were analyzed and evaluated under different pumping conditions.The results show that a supercontinuum spectrum with a spectral width of 4.852μm can be obtained in the proposed fiber with d_(1)/Λof 0.125,d_(2)/Λof 0.583 and the zero-dispersion wavelength of 3.228μm by pumping with a Gaussian pulse with a peak power of 800 W and a full width at half maximum(FWHM)of 20 fs at wavelength of 3.3μm.When the fiber is pumped by the pulse with the peak power of 2000 W,the FWHM of 80 fs at the wavelength of 4.0μm in the in the anomalous dispersion region,the modulation instability is obviously suppressed,and the high-coher-ence supercontinuum spectrum spanning from 1.1μm to 8.99μm is observed.A part of the pulse energy is transferred to the anomalous dispersion region when pumped at the wavelength of 2.8μm in the normal dis-persion region and a broadband high-coherence supercontinuum spectrum extending from 0.8μm to 9.8μm is generated in the 10 mm proposed fiber.This paper introduces elliptical air holes in the Al_(0.24)Ga_(0.76)As photonic crystal fiber,which enhances flexibility for tailoring the performance of supercontinuum,ultimately achieving the broadest supercontinuum spectrum with the shortest fiber length to date. 展开更多
关键词 SUPERCONTINUUM photonic crystal fiber COHERENCE Al_(0.24)Ga_(0.76)As
在线阅读 下载PDF
Ionic Liquid-regenerated Cellulose Fiber:A Promising Next Generation Regenerated Cellulose Fiber
4
作者 Xin-Yu Wang Kun-Kun Zhu +5 位作者 Min Zhang Yong-Xin Wei Jing-Jing Yuan Jin-Ming Zhang Jin-Feng Wang Jun Zhang 《Chinese Journal of Polymer Science》 2026年第1期21-29,I0008,共10页
As the global textile industry has accelerated its transition to a circular economy,iterative innovation in regenerated cellulose fibers has become a key industry focus.With viscose fiber having been industrialized fo... As the global textile industry has accelerated its transition to a circular economy,iterative innovation in regenerated cellulose fibers has become a key industry focus.With viscose fiber having been industrialized for over a century and lyocell fiber gaining market recognition because of its environmentally friendly process,which is the next regenerated cellulose fiber.Herein,ionic liquids with low vapor pressure,nonflammability,relatively simple recovery,and high dissolution efficiency were used to fabricate regenerated cellulose fibers.The viscose and lyocell properties of the fibers were systematically compared,including microscopic morphology,dyeing behavior,fibrillation resistance,mechanical properties,yarn-forming capacity,and fabric performance.The ionic liquid(IL)fiber exhibited a smooth surface and circular cross-section,with the highest tensile strength,moderate dyeing and fibrillation properties,and similar spinning and weaving performance.This work can provide a reference for the commercial application of regenerated cellulose fibers fabricated from ionic liquid. 展开更多
关键词 CELLULOSE Ionic liquid fiber VISCOSE LYOCELL
原文传递
High sensitivity and low refractive index D-type photonic crystal fiber sensor based on surface plasmon resonance
5
作者 GAO Jiachen MING Xianbing WEN Xiang 《Optoelectronics Letters》 2025年第9期528-534,共7页
A D-type photonic crystal fiber(PCF) sensor based on surface plasmon resonance(SPR) principle is designed.In order to excite the SPR effect,a gold film is plated on the open-loop channel of the sensor,the free electro... A D-type photonic crystal fiber(PCF) sensor based on surface plasmon resonance(SPR) principle is designed.In order to excite the SPR effect,a gold film is plated on the open-loop channel of the sensor,the free electrons in a metal are resonated with photons.The structural parameters are fine-tuned and the sensing performance of the sensor is studied.The results show that the maximum spectral sensitivity reaches 18 000 nm/RIU in the refractive index range of 1.24—1.32,and the maximum resolution is 5.56×10^(-6) RIU.The novel structure with high sensitivity and low refractive index provides a new perspective for fluid density detection. 展开更多
关键词 high sensitivity d type photonic crystal fiber surface plasmon resonance spr gold film maximum resolution refractive index low refractive index surface plasmon resonance
原文传递
Chaotic dynamics of Pr^(3+)/Yb^(3+)-doped all-fiber up-conversion visible fiber laser
6
作者 Yisong Li Yueling Hao +4 位作者 Juanfen Wang Xiaohui Chen Shengxiang Chen Chao Zhou Lingzhen Yang 《Chinese Physics B》 2026年第1期492-496,共5页
We investigate theoretically and experimentally the chaotic dynamics of visible-wavelength all-fiber ring laser.The100-m 630 HP fibers are used to ensure high non-linearity.A 4-m Pr^(3+)/Yb^(3+)-co-doped ZBLAN fiber p... We investigate theoretically and experimentally the chaotic dynamics of visible-wavelength all-fiber ring laser.The100-m 630 HP fibers are used to ensure high non-linearity.A 4-m Pr^(3+)/Yb^(3+)-co-doped ZBLAN fiber provides the gain.The chaotic laser was pumped by the laser diodes with the maximum power of 150 mW at the wavelength of 850 nm.The peak fluorescence spectrum of Pr^(3+)/Yb^(3+)-co-doped ZBLAN fiber at the wavelength of 635 nm shows that the visiblewavelength fiber laser can be achieved by synergistic energy transfer between Pr~(3+)and Yb^(3+)ions.The chaotic fiber laser is generated by adjusting the pump power,polarization controller and the auto-correlation,permutation entropy,skewness,and kurtosis were used to analyze the characteristics of chaotic laser.The noise-like time series and delta-like auto-correlation curve indicate the chaotic output.The complexity and randomness of time series are analyzed by the permutation entropy,skewness,and kurtosis.The result shows that chaotic dynamics is stable when the pump power exceeds a certain value.The visible chaotic all-fiber laser has high stability and can be applied for real-time monitoring and sensing.We believe that this approach may also be feasible for other materials for emission in the visible range. 展开更多
关键词 chaotic lasers visible fiber laser randomness Pr^(3+)/Yb^(3+)doped fiber
原文传递
Differential plasticity of excitatory and inhibitory reticulospinal fibers after spinal cord injury:Implication for recovery
7
作者 Rozaria Jeleva Carmen Denecke Muhr +1 位作者 Alina P.Liebisch Florence M.Bareyre 《Neural Regeneration Research》 2026年第5期2011-2020,共10页
The remodeling of axonal connections following injury is an important feature driving functional recovery.The reticulospinal tract is an interesting descending motor tract that contains both excitatory and inhibitory ... The remodeling of axonal connections following injury is an important feature driving functional recovery.The reticulospinal tract is an interesting descending motor tract that contains both excitatory and inhibitory fibers.While the reticulospinal tract has been shown to be particularly prone to axonal growth and plasticity following injuries of the spinal cord,the differential capacities of excitatory and inhibitory fibers for plasticity remain unclear.As adaptive axonal plasticity involves a sophisticated interplay between excitatory and inhibitory input,we investigated in this study the plastic potential of glutamatergic(vGlut2)and GABAergic(vGat)fibers originating from the gigantocellular nucleus and the lateral paragigantocellular nucleus,two nuclei important for locomotor function.Using a combination of viral tracing,chemogenetic silencing,and AI-based kinematic analysis,we investigated plasticity and its impact on functional recovery within the first 3 weeks following injury,a period prone to neuronal remodeling.We demonstrate that,in this time frame,while vGlut2-positive fibers within the gigantocellular and lateral paragigantocellular nuclei rewire significantly following cervical spinal cord injury,vGat-positive fibers are rather unresponsive to injury.We also show that the acute silencing of excitatory axonal fibers which rewire in response to lesions of the spinal cord triggers a worsening of the functional recovery.Using kinematic analysis,we also pinpoint the locomotion features associated with the gigantocellular nucleus or lateral paragigantocellular nucleus during functional recovery.Overall,our study increases the understanding of the role of the gigantocellular and lateral paragigantocellular nuclei during functional recovery following spinal cord injury. 展开更多
关键词 GABAergic(vGat)fibers gait features glutamatergic(vGlut2)fibers PLASTICITY recovery of function reticulospinal tract spinal cord injury
暂未订购
Influence of ultrasonic agitation on dispersion of fibers in a shell mold for investment casting
8
作者 Zhi-cheng Feng Kai Lü +2 位作者 Yan Lu Wen-bo Jin Lei Che 《China Foundry》 2026年第1期108-116,共9页
To develop a suitable production process for fiber reinforced investment casting shell mold,three methods were studied:the traditional method(M_(1)),the method of adding fiber into silica sol with mechanical stirring ... To develop a suitable production process for fiber reinforced investment casting shell mold,three methods were studied:the traditional method(M_(1)),the method of adding fiber into silica sol with mechanical stirring and ultrasonic agitation(M_(2)),and the method of adding fiber into slurry with mechanical stirring and ultrasonic agitation for durations of 3,15,30,and 45 min(M_(3)).The bending strength,high-temperature self-load deformation,and thermal conductivity of the shell molds were investigated.The results reveal that the enhancement of fiber dispersion through ultrasonic agitation improves the comprehensive performance of the shell molds.The maximum green bending strength of the shell mold by M_(2) reaches 3.29 MPa,which is 29% higher than that of the shell mold prepared by M_(1).Moreover,the high-temperature self-load deformation of the shell mold is reduced from 0.62% to 0.44%.In addition,simultaneous ultrasonic agitation and mechanical stirring effectively shorten the slurry preparation time while maintaining comparable levels of fiber dispersion.With the process M_(3)-45 min,the fillers are uniformly dispersed in the slurry,and the fired bending strength and the high-temperature self-load deformation reach 6.25 MPa and 0.41%,respectively.Therefore,the proposed ultrasonic agitation route is promising for the fabrication of fiber-reinforced shell molds with excellent fibers dispersion. 展开更多
关键词 investment casting steel fibers fiber-reinforced shell ultrasonic agitation thermal conductivity
在线阅读 下载PDF
Generation of ultra-flat broad spectrum with stable single-pulse mode-locking in double-clad Yb-doped fiber laser
9
作者 Minghui Sun Dongxin Gao +4 位作者 Yunli Yu Wenyu Wang Qingcao Liu Weixin Liu Yuzhai Pan 《Chinese Physics B》 2026年第1期474-480,共7页
We achieved an ultra-flat broad spectrum output with a 20-dB bandwidth of 77.85 nm in a double-clad Yb-doped fiber laser.The intensity difference between the highest and lowest points of the spectrum indicates a flatn... We achieved an ultra-flat broad spectrum output with a 20-dB bandwidth of 77.85 nm in a double-clad Yb-doped fiber laser.The intensity difference between the highest and lowest points of the spectrum indicates a flatness better than4 dB.More notably,this ultra-flat broad spectrum maintains a stable single-pulse mode-locking state.With the increase of pump power,an ultra-wide spectrum with a 20-dB bandwidth approaching 100 nm was formed at a pump power of 2.25 W.Additionally,we obtained a 9-pulse mode-locked state at another PC station with the same pump,which is the highest number of stable mode-locked pulse bursts observed so far with a first-order Raman frequency shift.This fiber laser shows its benefits of ultra-flat broad spectrum,high stability,and ease of fabrication,which provides a new method of obtaining the broadband light source for multiple practical applications. 展开更多
关键词 ultra-flat broad spectrum high stability double-clad Yb-doped fiber mode-locked multi-pulse bursts
原文传递
Thermally Drawn Flexible Fiber Sensors:Principles,Materials,Structures,and Applications
10
作者 ZhaoLun Zhang Yuchang Xue +7 位作者 Pengyu Zhang Xiao Yang Xishun Wang Chunyang Wang Haisheng Chen Xinghua Zheng Xin Yin Ting Zhang 《Nano-Micro Letters》 2026年第1期95-129,共35页
Flexible fiber sensors,However,traditional methods face challenges in fabricating low-cost,large-scale fiber sensors.In recent years,the thermal drawing process has rapidly advanced,offering a novel approach to flexib... Flexible fiber sensors,However,traditional methods face challenges in fabricating low-cost,large-scale fiber sensors.In recent years,the thermal drawing process has rapidly advanced,offering a novel approach to flexible fiber sensors.Through the preform-tofiber manufacturing technique,a variety of fiber sensors with complex functionalities spanning from the nanoscale to kilometer scale can be automated in a short time.Examples include temperature,acoustic,mechanical,chemical,biological,optoelectronic,and multifunctional sensors,which operate on diverse sensing principles such as resistance,capacitance,piezoelectricity,triboelectricity,photoelectricity,and thermoelectricity.This review outlines the principles of the thermal drawing process and provides a detailed overview of the latest advancements in various thermally drawn fiber sensors.Finally,the future developments of thermally drawn fiber sensors are discussed. 展开更多
关键词 Thermally drawn fiber sensors Sensing principles Temperature sensors Mechanical sensors Multifunctional sensors
在线阅读 下载PDF
Optimized fiber allocation for enhanced impact resistance in composites through damage mode suppression
11
作者 Noha M.Hassan Zied Bahroun +2 位作者 Mahmoud I.Awad Rami As'ad El-Cheikh Amer Kaiss 《Defence Technology(防务技术)》 2026年第1期316-329,共14页
Variable stiffness composites present a promising solution for mitigating impact loads via varying the fiber volume fraction layer-wise,thereby adjusting the panel's stiffness.Since each layer of the composite may... Variable stiffness composites present a promising solution for mitigating impact loads via varying the fiber volume fraction layer-wise,thereby adjusting the panel's stiffness.Since each layer of the composite may be affected by a different failure mode,the optimal fiber volume fraction to suppress damage initiation and evolution is different across the layers.This research examines how re-allocating the fibers layer-wise enhances the composites'impact resistance.In this study,constant stiffness panels with the same fiber volume fraction throughout the layers are compared to variable stiffness ones by varying volume fraction layer-wise.A method is established that utilizes numerical analysis coupled with optimization techniques to determine the optimal fiber volume fraction in both scenarios.Three different reinforcement fibers(Kevlar,carbon,and glass)embedded in epoxy resin were studied.Panels were manufactured and tested under various loading conditions to validate results.Kevlar reinforcement revealed the highest tensile toughness,followed by carbon and then glass fibers.Varying reinforcement volume fraction significantly influences failure modes.Higher fractions lead to matrix cracking and debonding,while lower fractions result in more fiber breakage.The optimal volume fraction for maximizing fiber breakage energy is around 45%,whereas it is about 90%for matrix cracking and debonding.A drop tower test was used to examine the composite structure's behavior under lowvelocity impact,confirming the superiority of Kevlar-reinforced composites with variable stiffness.Conversely,glass-reinforced composites with constant stiffness revealed the lowest performance with the highest deflection.Across all reinforcement materials,the variable stiffness structure consistently outperformed its constant stiffness counterpart. 展开更多
关键词 Sandwich panel fiber reinforced plastic composites Finite element analysis Variable stiffness Impact resistance Regression analysis Process optimization
在线阅读 下载PDF
Boosting the adsorption performance of ethanol on surface chemistry modified activated carbon fiber
12
作者 Mengyan Wang Yuxuan Wang +6 位作者 Junhao Wang Yinghui Han Jianxiao Yang Suchan Yang Yuanxun Zhang Peng Huo Xin Zhang 《Journal of Environmental Sciences》 2026年第1期178-186,共9页
As a potential adsorption material,it is still a challenge for activated carbon fiber(ACF)in efficient adsorption of ethanol due to its nonpolar surface,which is mainly emitted from the grain drying industry.This stud... As a potential adsorption material,it is still a challenge for activated carbon fiber(ACF)in efficient adsorption of ethanol due to its nonpolar surface,which is mainly emitted from the grain drying industry.This study prepared surface polarity-modified ACF using the heteroatom doping method.The modified ACF possessed a richer array of strongly polar oxygen/nitrogen-containing functional groups(primarily phenolic hydroxyl and lactone groups),a larger specific surface are1,and a more developed micropore structure.The adsorption capacities of ethanol for O-ACF and N-ACF were 4.110 mmol/g and 1.698 mmol/g,respectively,which were 11.3 times and 4.7 times those of unmodified ACF.This was a significant improvement over our previous work(0.363 mmol/g).The improvement of adsorption capacity for the N-ACF was mainly due to the higher specific surface are1,greater number of micropores(more adsorption sites)and abundant existence of defects,whereas,for O-ACF,the improvement mainly relied on the abundant presence of oxygen-containing functional groups on the surface.However,water had a negative effect on the adsorption of ethanol for the modified ACF due to competitive adsorption and the disappearance of capillary condensation.It was further revealed that the adsorption process of ethanol and water was quite different.It obeyed the linear driving force(LDF)model for ethanol adsorption,however,the intraparticle diffusion(IPD)model for water adsorption. 展开更多
关键词 Activated carbon fiber(ACF) Heteroatom doping Surface polarity-modified Polar functional groups Microporous filling Linear driving force(LDF) In-particle diffusion(IPD)
原文传递
禽腺病毒Fiber2蛋白抗原制备2种新型疫苗及保护效果试验
13
作者 岳筠 刘霞 +3 位作者 胡茜 许力文 尹德晶 程振涛 《贵州畜牧兽医》 2025年第6期27-31,共5页
为提高禽腺病毒4型(FAdV-4)疫苗的免疫效果,以FAdV-4贵州分离株的纤突蛋白(Fiber2)为抗原,通过间接免疫荧光检测pVAX1-Fiber2重组质粒在LMH细胞内的表达情况,以此构建重组质粒,制备DNA疫苗;通过pColdⅠ载体对Fiber2进行原核表达,构建原... 为提高禽腺病毒4型(FAdV-4)疫苗的免疫效果,以FAdV-4贵州分离株的纤突蛋白(Fiber2)为抗原,通过间接免疫荧光检测pVAX1-Fiber2重组质粒在LMH细胞内的表达情况,以此构建重组质粒,制备DNA疫苗;通过pColdⅠ载体对Fiber2进行原核表达,构建原核表达载体,制备亚单位疫苗,并对2种新型疫苗与灭活疫苗的攻毒保护效果进行比较。结果:pVAX1-Fiber2重组质粒可在LMH细胞内有效表达Fiber2蛋白,原核表达的Fiber2重组蛋白具有良好的免疫原性;Fiber2亚单位疫苗、Fiber2 DNA疫苗、灭活疫苗的保护率分别为98%、58%、96%。组织病理学分析显示,3种疫苗均可减轻FAdV-4感染的病理变化程度,其中Fiber2亚单位疫苗与灭活疫苗的效果更好。结论:Fiber2亚单位疫苗具有良好的攻毒保护效果,可作为防控FAdV-4的候选疫苗。 展开更多
关键词 禽腺病毒4型 fiber2蛋白 DNA疫苗 亚单位疫苗 保护效果
在线阅读 下载PDF
Preparation and ASE Spectrum of a Single-Mode Erbium Doped Tellurite Glass Fiber with D-type Cladding Geometry 被引量:1
14
作者 Junjie ZHANG, Shixun DAI, Guonian WANG, Shiqing XU, Shunguang LI and Lili HUShanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第6期671-674,共4页
Based on the host of tellurite glasses, the glass formation, preform manufacture, and fiber fabrication are described. The characterization of amplified spontaneous emission (ASE) from this newly fabricated single-mod... Based on the host of tellurite glasses, the glass formation, preform manufacture, and fiber fabrication are described. The characterization of amplified spontaneous emission (ASE) from this newly fabricated single-mode Er3+-doped tellurite fibers is also presented. When pumped at 980 nm, a very broad erbium ASE around 1.53 μm was observed. The variations of ASE with fiber length and pumping power are measured and discussed. The output of 2 mW from Er3+-doped tellurite fiber ASE source was obtained under the pump power of 660 mW. 展开更多
关键词 PREPARATION ASE spectrum Er^(3+) Tellurite glass fiber
在线阅读 下载PDF
Low-repetition rate,nanosecond,high-power pulse amplifier system based on Yb-doped rod-type fiber 被引量:1
15
作者 于佳 赵卫 +4 位作者 王屹山 杨直 高存孝 牛林全 张挺 《Chinese Optics Letters》 SCIE EI CAS CSCD 2013年第5期9-11,共3页
We report a nanosecond-pulse amplification system based on an Yb-doped, 100-μm core, rod-type photonic crystal fiber. Up to 10 W of average power with pulse energy of I mJ and peak power of 450 kW is obtained at the ... We report a nanosecond-pulse amplification system based on an Yb-doped, 100-μm core, rod-type photonic crystal fiber. Up to 10 W of average power with pulse energy of I mJ and peak power of 450 kW is obtained at the repetition rate of 10 kHz. The high-power nanosecond pulse has a good pulse shape and spectral characteristics. The usage of rod-type fibers provides a novel structure for nanosecond pulse amplification. 展开更多
关键词 Photonic crystal fibers YTTERBIUM
原文传递
Dual-channel fiber-optic surface plasmon resonance sensor with cascaded coaxial dual-waveguide D-type structure and microsphere structure 被引量:1
16
作者 李玲玲 魏勇 +4 位作者 刘春兰 任卓 周爱 刘志海 张羽 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第2期201-208,共8页
To address the restriction of fiber-optic surface plasmon resonance(SPR) sensors in the field of multi-sample detection, a novel dual-channel fiber-optic SPR sensor based on the cascade of coaxial dual-waveguide D-typ... To address the restriction of fiber-optic surface plasmon resonance(SPR) sensors in the field of multi-sample detection, a novel dual-channel fiber-optic SPR sensor based on the cascade of coaxial dual-waveguide D-type structure and microsphere structure is proposed in this paper. The fiber sidepolishing technique converts the coaxial dual-waveguide fiber into a D-type one, and the evanescent wave in the ring core leaks, generating a D-type sensing region;the fiber optic fused ball push technology converts the coaxial dual waveguides into microspheres, and the stimulated cladding mode evanescent wave leaks, producing the microsphere sensing region. By injecting light into the coaxial dual-waveguide middle core alone, the sensor can realize single-stage sensing in the microsphere sensing area;it can also realize dual-channel sensing in the D-type sensing area and microsphere sensing area by injecting light into the ring core. The refractive index measurement ranges for the two channels are 1.333–1.365 and 1.375–1.405, respectively, with detection sensitivities of 981.56 nm/RIU and 4138 nm/RIU. The sensor combines wavelength division multiplexing and space division multiplexing technologies, presenting a novel research concept for multi-channel fiber SPR sensors. 展开更多
关键词 coaxial dual-waveguide optical fiber D structure optical fiber microsphere structure dual-channel fiber-optic surface plasmon resonance(SPR)sensor
原文传递
含有FAdV-4 Fiber 2 B细胞表位的IBV S1融合蛋白的表达及免疫原性
17
作者 高亚茹 王泱 +8 位作者 张瀚文 刘琳 曹晓阳 刘静瑞 李冰洁 常晶晶 宋亚鹏 高文明 李新生 《中国兽医学报》 北大核心 2025年第8期1616-1623,共8页
为验证禽腺病毒4(FAdV-4)WZ株Fiber 2 B细胞表位Pep1和Pep4可作为多价表位疫苗的候选表位,将表位与鸡传染性支气管炎病毒M41株S1蛋白基因以不同模式进行串联,构建重组融合质粒,并在大肠杆菌BL21(DE3)中表达。经Western blot和ELISA试验... 为验证禽腺病毒4(FAdV-4)WZ株Fiber 2 B细胞表位Pep1和Pep4可作为多价表位疫苗的候选表位,将表位与鸡传染性支气管炎病毒M41株S1蛋白基因以不同模式进行串联,构建重组融合质粒,并在大肠杆菌BL21(DE3)中表达。经Western blot和ELISA试验证实,表达获得的4个融合蛋白均能特异性地与抗M41全病毒血清和WZ株抗Fiber 2-knob蛋白血清发生反应。纯化后免疫BALB/c小鼠,在小鼠血清中可检测出抗肽表位的特异性抗体,其中Pep4表位比Pep1表位能诱导更强的免疫反应。当Pep1分别连接在融合蛋白的氨基端和羧基端时,均能使免疫动物产生相同水平的抗Pep1抗体,而将Pep4连接在融合蛋白羧基端时,免疫动物产生的抗Pep4特异性抗体水平更高。结果表明,具有反应原性的WZ株Fiber 2的B细胞表位Pep1和Pep4在与蛋白偶联时形成的融合蛋白可以使Pep1和Pep4获得免疫原性,且不影响载体蛋白的抗原性,这为FAdV-4多价表位疫苗的设计和研发提供了技术支撑和参考依据。 展开更多
关键词 B细胞表位 FAdV-4 fiber 2 传染性支气管炎 融合蛋白
原文传递
可表达禽腺病毒Fiber2基因的重组马立克病病毒疫苗株的构建
18
作者 张子博 陈运通 +12 位作者 范文瑞 吴龙波 李雨萌 郭茹 张艳萍 刘长军 祁小乐 刘永振 王素艳 崔红玉 段雨路 李留安 高玉龙 《中国兽医科学》 北大核心 2025年第7期884-890,共7页
为研制禽类肝炎-心包积液综合征(HHS)重组马立克病病毒(MDV)活载体疫苗,通过PCR扩增血清4型禽腺病毒(FAdV-4)强毒株Fiber2基因并克隆入pcDNA3.1载体,构建重组真核表达质粒pSV40-Fiber2,然后通过PCR扩增和同源重组构建表达黏粒pMS-Fiber2... 为研制禽类肝炎-心包积液综合征(HHS)重组马立克病病毒(MDV)活载体疫苗,通过PCR扩增血清4型禽腺病毒(FAdV-4)强毒株Fiber2基因并克隆入pcDNA3.1载体,构建重组真核表达质粒pSV40-Fiber2,然后通过PCR扩增和同源重组构建表达黏粒pMS-Fiber2,与其他4个相互重叠并覆盖MDV全基因组的黏粒共同转染至鸡胚成纤维细胞(CEF)拯救病毒rMDV-Fiber2,在CEF中传代后用PCR、间接免疫荧光试验和Western-blot进行鉴定,并绘制体外生长曲线,分析其体外复制特性。结果表明,rMDV-Fiber2能够稳定表达Fiber2蛋白,rMDV-Fiber2在CEF中的复制能力与亲本病毒rMSΔmeq无明显差异;攻毒保护试验结果表明,重组病毒rMDV-Fiber2免疫后鸡能够对FAdV-4强毒株感染有80%存活率。结论,构建成功的重组病毒rMDV-Fiber2与亲本株的复制力相似,为研制HHS重组MDV活载体疫苗奠定了基础。 展开更多
关键词 血清4型禽腺病毒 重组马立克病病毒活载体疫苗 fiber2
在线阅读 下载PDF
Preparation and sensing characteristics of long-period fiber gratings based on periodic microchannels 被引量:1
19
作者 SUN Cai LI Yuan-jun +6 位作者 YANG He-er PAN Xue-peng LIU Shan-ren WANG Bo GAO Meng-meng GUO Qi YU Yong-sen 《中国光学(中英文)》 北大核心 2025年第1期198-205,共8页
Long-period fiber gratings have the advantages of small size,corrosion resistance,anti-electro-magnetic interference,and high sensitivity,making them widely used in biomedicine,the power industry,and aerospace.This pa... Long-period fiber gratings have the advantages of small size,corrosion resistance,anti-electro-magnetic interference,and high sensitivity,making them widely used in biomedicine,the power industry,and aerospace.This paper develops a long-period fiber grating sensor based on periodic microchannels.First,a series of linear structures were etched in the cladding of a single-mode fiber by femtosecond laser microma-chining.Then,the laser-modified region was selectively eroded by selective chemical etching to obtain the periodic microchannel structure.Finally,the channels were filled with polydimethylsiloxane(PDMS)to im-prove the spectral quality.The experimental results show that the sensor has good sensitivity in the measure-ment of various parameters such as temperature,stress,refractive index(RI),and bending.It has a temperat-ure sensitivity of−55.19 pm/℃,a strain sensitivity of−3.19 pm/με,a maximum refractive index sensitivity of 540.28 nm/RIU,and a bending sensitivity of 2.65 dB/m^(-1).All of the measurement parameters show good lin-ear responses.The sensor has strong application prospects in the field of precision measurement and sensing. 展开更多
关键词 long-period fiber gratings femtosecond laser micromachining fiber sensors
在线阅读 下载PDF
Experimental Study on the Compressive and Flexural Properties of the Ultrahigh-Performance Concrete Containing Fibers 被引量:1
20
作者 Mohammad Yousef Nejati Manuchehr Behruyan +2 位作者 Amirreza Sadeghi Kourosh Mehdizadeh Abbasali Sadeghi 《Journal of Building Material Science》 2025年第1期83-96,共14页
Ultrahigh-performance concrete(UHPC)is a groundbreaking kind of concrete that distinguishes itself from conventional concrete through its unique material properties.Understanding and managing the time-dependent charac... Ultrahigh-performance concrete(UHPC)is a groundbreaking kind of concrete that distinguishes itself from conventional concrete through its unique material properties.Understanding and managing the time-dependent characteristics of these materials is essential for their effective use in various construction applications.This study presents an experimental evaluation of the compressive and bending properties of the UHPC incorporating polypropylene,steel,and glass fibers.Based on ACI-211 guidelines,the UHPC mix was designed by using three types of aggregates:limestone,andesite,and quartzite,along with 5%fiber content(at varying percentages of 0,5%,10%,15%,and 20%)relative to the cementitious materials,and three different water-to-cement(w/c)ratios(0.24,0.3,and 0.4)were used.In this research,the compressive and flexural strength tests were conducted.The results show that increasing the values of the fibers significantly enhances the compressive strength of the studied samples.Furthermore,the utilization of fibers markedly improves the bending strength of the samples,demonstrating a strong correlation with the yield resistance of the material.Also,findings show that using steel fibers increases the compressive and bending strength of the tested samples more than polypropylene and glass fibers.For instance,in UHPC samples with 0.4 w/c,the average compressive strength values are 82.2 MPa,70.3 MPa,and 67.1 MPa for steel,polypropylene,and glass fibers,respectively.Also,in the flexural strength test,the modulus of rupture is obtained as an average of 6.24 MPa,5.24 MPa and 4.83 MPa for UHPC samples with steel,polypropylene and glass fibers,respectively. 展开更多
关键词 Experimental Study Ultrahigh-Performance Concrete(UHPC) Polypropylene fiber Steel fiber Glass fiber Compressive Strength Flexural Strength
在线阅读 下载PDF
上一页 1 2 250 下一页 到第
使用帮助 返回顶部