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101.
A new sensor for simultaneous measurement of humidity and temperature is proposed. The sensor consists of Fabry–Perot cavity formed by two identical uniform fiber Bragg gratings. To make the cavity serves as humidity sensor, moisture sensitive polymer, which is polyimide, is coated on the FBG and on the cavity with different thickness. When the sensor is exposed to the relative humidity change, the polyimide will expand and stretch the fiber and induces strain on the FBG and on the cavity. The induced strain alters the grating period, cavity length and effective refractive index of fiber. The simulation results show that the humidity sensitivity and thermal sensitivity are 1.92 pm/%RH and 8.87 pm/°C, respectively, for polyimide coating thickness of 10 μm on the FBG and 15 μm on the cavity. 相似文献
102.
Optical homodyne receivers based on modified balanced optical phase-locked loop is analyzed taking into account loop propagation delay. This modified loop contains all the components of a standard BOPLL in conjunction of an additional phase modulator. This modified loop offers a much improved tracking performance and also shows good improvements in the reduction performance over previously reported methods, like, relaxed line-width requirement and improved lock-in range. This study for the first time shows the imperfect-phase-recovery-induced power penalty as a function of laser line-width with the optimum phase deviations in the presence of non-negligible loop propagation delay. It is found that in order to maintain a 10−10 BER system performance with ξ = 1, R = 1 A/W, PR = −53 dBm, Δυ = 1 MHz, phase modulator sensitivity KPM = 10 rad/V and 10° phase deviation between the two transmitted bits, the loop delay must be kept below 3 ns. Further, the required line-width with the non-negligible loop delay time is evaluated and found to be (2.1 × 10−3)/τ, where τ (s) is the loop delay. This number corresponds to BER = 10−10, imperfect phase recovery power penalty of 1 dB and phase modulator sensitivity KPM = 20 rad/V. 相似文献
103.
谱带吸收式光纤温度传感器 总被引:7,自引:1,他引:7
本文提出了一种新颖的半导体谱带吸收式光纤温度传感器系统结构.分析了半导体谱带吸收式光纤温度传感器的原理,推导了其数学模型.该传感器用反射式传感结构,以砷化镓半导体材料作为温度敏感元件,并利用除法器消除了传感器光源的波动及光纤的连接损耗,使传感器具有结构简单、抗环境干扰、高可靠性特点.文中对传感器的整个系统进行了设计和分析,并进行了实验测试,实验结果显示:该传感器在-20~110℃的温度范围内有1℃的测量精确度,并且温度从110℃降到15℃时的时间响应为25s. 相似文献
104.
Doo-Hee Chang Seung-Ho Jeong Bong-Guen Hong Kyu-Sun Chung Gon-Ho Kim Jae-Shin Lee 《Current Applied Physics》2001,1(6):497
The radial profiles of KT-1 tokamak (major radius of 27 cm, minor radius of 4.25 cm, two poloidal stainless-steel limiters) edge plasma parameters are measured using single and triple electric probes. The particle transport parameters are calculated from the measured edge plasma parameters, and the results are analyzed by the simple fluid approximations. The cross-field particle diffusion coefficient (D) in the boundary plasma of the KT-1 is calculated from the density scrape-off length (λn) measured by using a triple probe. The particle density and electron temperature fall exponentially in the radial direction with the e-folding length of λn=0.13 cm and λe=0.41 cm, respectively. From the scrape-off layer (SOL) model, the experimental values of scrape-off length (λn) is used to calculate the cross-field diffusion coefficient (D=1.2×103cm2/s), roughly corresponding to one third of the typical Bohm value. A simple SOL model with the contribution of recombination is introduced to evaluate the Bohm diffusion in the KT-1 tokamak edge plasma. Cross-field heat conductivity calculated from these deduced values is 5.2D in the SOL of KT-1 edge plasma. These results provide the finally certain information for edge particle transport in the KT-1 boundary plasmas. 相似文献
105.
M. Q. Mehmood Hong Liu Kun Huang Shengtao Mei Aaron Danner Boris Luk'yanchuk Shuang Zhang Jinghua Teng Stefan A. Maier Cheng‐Wei Qiu 《Laser \u0026amp; Photonics Reviews》2015,9(6):674-681
This work presents analytical, numerical and experimental demonstrations of light diffracted through a logarithmic spiral (LS) nanoslit, which forms a type of switchable and focus‐tunable structure. Owing to a strong dependence on the incident photon spin, the proposed LS‐nanoslit converges incoming light of opposite handedness (to that of the LS‐nanoslit) into a confined subwavelength spot, while it shapes light with similar chirality into a donut‐like intensity profile. Benefitting from the varying width of the LS‐nanoslit, different incident wavelengths interfere constructively at different positions, i.e., the focal length shifts from 7.5 μm (at λ = 632.8 nm) to 10 μm (at λ = 488 nm), which opens up new opportunities for tuning and spatially separating broadband light at the micrometer scale.
106.
107.
108.
光纤Bragg光栅热敏力敏效应研究及应用探讨 总被引:5,自引:1,他引:5
本文报道了光纤Bragg光栅热敏力敏效应的实验研究结果,测量所得的光纤Bragg光栅温度系数和应力系数分别为6.84×10-6/℃和7.27×10-6/gf,与理论值6.85×10-6/℃和7.32×10-6/gf符合得很好.在20~180℃和0~50gf的温度应力测量范围内,光纤Bragg光栅透射谱中心波长移动量同温度应力具有良好的线性关系.基于光纤Bragg光栅的热敏力敏效应,本文还讨论了光纤Bragg光栅温度应变传感器实用化时必须首先考虑的一些关键问题. 相似文献
109.
炸药爆轰瞬态温度的光谱法测定 总被引:7,自引:0,他引:7
在双谱线原子发射光谱测温原理的基础上,设计了对炸药爆轰的瞬态温度进行实时测量的光纤光谱测试系统,利用光学纤维将炸药爆轰的光谱信号传入测光系统,用多通道数据采集器处理数据,系统的时间分辨率可高达0.1μs,所选择的两条谱线的波长分别为CuI 510.5和CuI 521.8nm,为炸药爆温的测量提供了一种简单有效的方法。利用该测温系统,通过对炸药爆轰光谱的测量,获得了实时瞬态爆轰温度-时间分布曲线。 相似文献
110.