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应用光学双稳原理的高精度光纤传感器 总被引:3,自引:1,他引:2
本文提出一种光纤干涉仪与光电混合光双稳装置相结合的新型光纤传感器.用光双稳开关脉冲计数度量温度变化,其测量精度比基于干涉条纹计数的一般干涉型光纤传感器的精度约高10~100倍,而且测量精度可调节.完成了这种传感器原理的模拟实验验证. 相似文献
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基于激光微加工的新型光纤法布里-珀罗折射率传感器 总被引:4,自引:0,他引:4
提出了一种新型的光纤法布里-珀罗(F-P)折射率传感器,该传感器由单模光纤头端面和靠近该端面的由157 nm激光加工而成的短空气腔构成.短空气腔两个端面的反射光和光纤头端面的反射光发生干涉形成了传感器的反射谱干涉条纹.干涉条纹的对比度受光纤头端面外部的折射率影响,在干涉条纹包络的波谷处具有最大的对比度,外部待测折射率可通过计算该处的对比度得到.传感器对温度不敏感同,测量范围广.在1.33至1.441范围内,折射率灵敏度约为27 dB,分辨率约为1.12X10-4;在1.45~1.62范围内.折射率灵敏度约为24 dB,分辨率约为1.26×10-4. 相似文献
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Shack-Hartmann波前传感器非零位在轴检测离轴非球面反射镜 总被引:1,自引:0,他引:1
在离轴非球面反射镜研磨后期和粗抛光阶段,被测反射镜面形与理想面形存在着较大的偏差,表面反射率较低,采用干涉测量会因局部区域干涉条纹过密或条纹对比度过低,造成普通干涉仪无法进行全口径测量,而普通接触式轮廓仪测量精度此时已经不能满足加工要求。鉴于Shack-Hartmann波前传感器较大的动态范围和较高的测量精度,提出了采用Shack-Hartmann波前传感器非零位在轴检测离轴非球面面形,研究了该方法的检测原理并搭建了检测系统,分析了系统误差来源,并制作了用于在轴检测离轴非球面的参考波前,对两个不同加工精度的离轴非球面反射镜进行了测量,并与干涉仪的测量结果进行了对比。对比结果表明,Shack-Hartmann波前传感器的测量结果是正确可靠的,并且可以弥补轮廓仪测量和干涉仪测量的不足,从而证明了采用Shack-Hartmann波前传感器在轴检测离轴非球面的可行性和正确性。 相似文献
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基于机器视觉系统OpenMV,以迈克耳孙干涉仪干涉条纹为研究识别对象,根据光源相干性及干涉条纹动态特性,提出基于灰度采样统计的干涉条纹识别检测算法(干涉条纹同心形态搜索算法),运用MicroPython或Python语言编制实时检测程序,运行结果表明仿真和真实干涉条纹都得到了可靠的检测,精度为0.5个条纹,并且测量不确定度主要由算法制定的此条纹检测精度引起,证明了干涉条纹机器视觉检测方法和技术的有效性. 相似文献
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为使剪切散斑干涉能适用于物体大变形的测量,选用双波长激光照射和彩色相机,用傅里叶变换法对干涉图进行频谱分离,用红色波长相位减去绿色波长相位,得到合成波长相位,经频域滤波和相位解包裹,得到连续相位.理论计算表明合成波长相位条纹数是单波长相位条纹数的0.189倍.合成波长参与计算可以有效减小相位条纹密度,解决剪切散斑干涉在物体离面位移测量中由于变形条纹过于密集而导致欠采样的问题,同时降低对干涉条纹滤波和相位解包裹难度,增强图像处理可靠度,提高了测量准确度.给出了合成波长与单波长相位幅度的比较以及相同外力下二者相位条纹密度的对比,实验验证了所提方法的有效性、准确性和可靠性,实现了剪切散斑干涉对复合材料大变形的测量,扩展了剪切散斑干涉工程应用的范围,为新型剪切散斑干涉测量系统的设计提供了参考. 相似文献
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Interferometry is widely used in nano-scale micro-topography measurement. In order to improve its accuracy and sensitivity, a high-sensitivity homodyne interferometry based on white light interference and laser secondary interference was proposed. A high-sensitivity homodyne interferometry system was designed, and the zero point of the laser secondary interference was used to locate the dark striation of white light interference, so that it could reach the maximum slope when optical path difference was zero. The signals of white light and laser were analyzed by using the wave principle and intensity formula of interference fringes, and a sensitivity calculation method based on the combination of white light and laser interference signal was proposed. The system and its sensitivity were simulated. Finally, the optical path was built, and the white light interference fringes were adjusted to the dark striations position, so as to locate the zero position of laser secondary interference and carry out the data acquisition. It is showed that the sensitivity of the measurement method is at least 1 832 times higher than that of the laser secondary interference, and the corresponding measurement uncertainty is only ±0.288 7 mV. The measurement system can effectively solve the problem of large amount of calculation in traditional interferometry, and has high sensitivity, stability and reliability. Copyright ©2022 Journal of Applied Optics. All rights reserved. 相似文献
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A. M. Lyalikov 《Optics and Spectroscopy》2006,101(1):162-167
The possibility of studying phase objects by reverse shearing interferometry with high measurement sensitivity is demonstrated. Phase objects are studied in two stages. In the first stage, holographic reverse shear interferograms are measured with and without an object under nonlinear conditions with tuning to frequent reference fringes. In the next stage, these interferograms are optically processed to obtain two interference patterns. The behavior of the interference fringes is the same as in the case of conventional double-beam interferometry with a standard reference wave. The increase in the measurement sensitivity in the thus-obtained interference patterns is due to the use of higher diffraction orders reconstructed from the holographic interferograms. A possibility of controlling the width of interference fringes is considered. The results of experimental approval of this technique are presented. 相似文献
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为了在保证抗干扰能力不下降的条件下提高对激光中心波长的检测精度,设计了多级组合棱镜系统,并提出了多级组合棱镜的干涉条纹拼接处理方法及相位耦合的计算公式.通过计算多级组合棱镜的干涉图强度、光程差函数及光谱分辨率,分析了采用三块子棱镜的组合结构的光谱获取,给出了用于分段干涉条纹拼接的处理方法及步骤,最终光谱分辨率可达2.8... 相似文献
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A velocity calibrator based on a laser driven Michelson interferometer was designed for a73Ge Mössbauer spectrometer in the range of 100 to 500 μm/sec. The conventional method of counting the interference fringes cannot be used in this case because the displacement only spans about 3 to 15 μm and only a few fringes can be observed during one velocity sweep. The velocity calibration obtained this way was compared with the calibration obtained from57Fe measurement, and excellent agreement was found between the two methods. 相似文献