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1.
针对标准单晶硅球直径精密测量的需要,本文在介绍标准硅球直径测量系统原理并分析其光路特点的基础上,根据建立的数学模型,对激光束斜入射标准板时产生的椭圆干涉图像进行了分析,并对不同入射角度时干涉环中心点带来的直径测量误差进行了研究.分析结果显示,在给定的实验条件下,当入射角为10~(-3) rad时,误差已达6.6nm.提出了一种精确调整光束垂直入射平板的方法,实验结果表明,此方法能够使光束入射角的调整优于10~(-5)rad,满足系统测量的要求.  相似文献   

2.
在斐索干涉仪中测量光学平板受到多面反射光束的影响,而波长移相干涉技术是通过光源波长的改变来实现干涉信号的移相,原理上可以实现各个干涉信号的分离,在算法上要求能对多次谐波进行较好的抑制,加权多步移相算法可以实现这样的目的.笔者提出了加权多步移相算法的改进算法,可以提高算法对误差的抑制能力,最后用实验验证了改进算法的有效性.  相似文献   

3.
本文讨论了由激光器发出的光束,通过克卜勒内调焦倒置望远镜系统,得到扩束的平行光束,此光束照射到置于被测件(如导轨)上的装有条纹干涉系统的靶上,即可在影屏上获得干涉条纹图象。将靶沿被测导轨移动,由于导轨不直度误差,将使得干涉条纹发生移动,其移动量的大小即精确地表征了不直度的误差大小。实验结果证明:采用激光准直干涉仪作准直和测量,条纹清晰,使用方便,抗干扰及防振性能好,可在车间条件下使用。本装置测量范围可达100米以下的尺寸,其误差小于20微  相似文献   

4.
在光子相关法测量自由场空气声声压中,光束夹角的准确测量影响着测量声压结果。提出了采用显微放大成像方法,利用CCD测量干涉区条纹间距,从而得到更为精确的光束夹角。首先,通过仿真分析高斯光束干涉条纹间距均匀性对光束夹角测量的影响,优化了声场测量的光路结构;然后,使用标准分辨率板对CCD显微成像的放大倍率进行标定并实现了干涉角度测量;最后,构建了光子相关法自由场空气声声压测量的实验系统。实验结果表明,相比于测量光的空间传播距离等传统三角方法获得的光束夹角,该方法得到的光束夹角提高了空气声声压测量的精度。  相似文献   

5.
在基于条纹投射的物体表面形貌测量中,温度漂移和振动是造成条纹相位漂移的主要因素。为了稳定条纹相位,在相位补偿系统(PCS)中运用峰值检测简化相位提取过程,发展了一种基于正弦相位调制的干涉条纹相位稳定技术。将光纤缠绕在柱形压电陶瓷(PZT)上,向PZT注入正弦驱动电压实现对干涉条纹相位的正弦相位调制。运用2×2光纤耦合器分光,结合马赫-泽德干涉与杨氏干涉结构实现条纹投射。光电探测器检测两端面反射信号形成的迈克尔逊干涉信号,从中提取环境因素引起的相位漂移,运用旋转坐标数字机进行快速反正弦计算,生成的补偿信号与调制信号叠加后共同驱动PZT,实现条纹相位稳定。实验结果表明,条纹相位稳定精度为5.5 mrad,较好地消除环境因素引起的相位漂移。  相似文献   

6.
张彩妮 《光电工程》2005,32(6):69-71
提出了一种基于Fabry-Perot板干涉的角位移测量新方法。此方法采用函数近似,只需将初始入射角确定在40°到50°之间,即可由角位移与干涉信号条纹数变化间的函数关系,高精度测量角位移。解决了采用F-P板干涉法测量角位移需精确确定入射光初始角的问题。使用计算机处理采集的干涉信号,对干涉条纹进行细分,实现干涉信号相位测量的高分辨力。理论模拟和实验结果得出本方法可以实现精度为10-5rad数量级的角位移测量。该方法的测量装置采用带尾纤的半导体激光作为光源,由自聚焦透镜准直,出射光束直径为0.5mm,使探测头为小光斑。该装置结构简单,能实现小型化。  相似文献   

7.
介绍了新型零差激光干涉仪的测量原理,实验和理论分析了干涉条纹宽度、激光光强、散斑效应对该激光干涉仪测量误差的影响。结果表明,干涉条纹宽度对振幅测量值影响并不明显,测量误差为0.5%;光强变化引起的振幅测量误差为0.5%,光强较弱会增大测量误差;散斑效应引起的振幅测量误差与透镜参数有关,测量误差为0.4%。该新型零差激光干涉仪可有效降低测振系统对测量环境的要求。  相似文献   

8.
薄膜厚度的测量,是真空镀膜技术中的一项重要内容。根据Fizeau条纹原理,做成了一种简易透射式多光束等厚干涉测定薄膜厚度的装置。它可以测量微米级的薄膜厚度,检查光学平面的质量,测量细丝的直径和光的折射率等,精度在2%左右。一、实验原理由光的干涉原理可知,任意两个相邻的明条纹或暗条纹之间的距离l由下式决定  相似文献   

9.
可调合成波长链绝对距离干涉测量   总被引:2,自引:0,他引:2  
晁志霞  殷纯永  徐毅  许婕 《计量学报》2002,23(3):161-163,177
本文提出一种利用半导体激光器的波长调谐特性实现的可调合成波长链绝对距离干涉测量方法 ,针对不同的待测距离 ,可选择不同的合成波长链 ,完成对待测距离的由粗测到精测的整个过程。文中基于这种方法构建了干涉测量系统 ,该系统利用压电陶瓷调制的在一条直线上的两个双光束干涉仪 ,使待测距离被包含于一个交流信号的相位项中 ,从而使小数条纹的测量转化为相位测量 ,合成波干涉条纹的小数级次由单波长干涉信号的相位测量值计算得到。文中以外尺寸测量为例描述了实验装置 ,实验结果表明 ,在现有的测量系统和实验条件下 ,待测距离小于 5mm时的测量极限偏差优于 2 0μm。  相似文献   

10.
马英瀚  张树  皮磊  阎晗  胡佳成  施玉书 《计量学报》2023,(12):1799-1804
为解决传统分离镜组式干涉仪体积较大,无法在空间受限的环境条件下应用的问题,开展了全光纤F-P干涉位移测量技术研究。根据干涉原理分析了不同反射率条件对干涉信号形式的影响,计算得出:当反射率为4%时,多光束干涉的光强信号将近似为正弦函数,并利用有限元仿真对位移测量原理进行验证。设计搭建了基于非本征F-P干涉技术的全光纤位移测量系统。实验结果表明:该系统在1 min内静态噪声电压标准差为23.3 mV;在1 mm位移范围内,该系统与XL-80激光干涉仪的测量结果呈现高度线性关系,线性相关系数R 2为1,且该系统位移测量重复性优于XL-80激光干涉仪。  相似文献   

11.
Abstract

Temporal coherence of the idler photon beam induced by a coherent input signal was studied for non-degenerate optical parametric down conversion. When the optical path difference of the interferometer is much longer than the coherence length of the spontaneous idler radiation, the experimental results show that the first-order temporal coherence of the idler photon can be induced by a coherence input signal and the interference fringe visibility is determined by the intensity of the coherent input signal.  相似文献   

12.
Active phase matching of multiline HF laser beams by means of a phase-locked Mach-Zehnder interferometer was demonstrated by locking the interferometer to the central interference fringe at zero optical path length difference. The central fringe could be found by varying the spectral content of the input beam. Laser amplification in one leg of the interferometer decreased fringe visibility without adversely affecting locking. Single-line fringe patterns produced by an array spectrometer (while the interferometer was operated in its scanning mode) were analyzed to show that no significant dispersion occurred in the amplifier. The techniques developed have potential for measuring dispersion mismatch between larger parallel amplifiers. These experiments demonstrated in principle that a number of multiline HF amplified beams can be recombined and phase-matched to produce a high beam quality output beam.  相似文献   

13.
Anderson CS 《Applied optics》1995,34(32):7474-7485
Common-path interferometers have been used to perform phase visualization for over 40 years. A number of techniques have been proposed, including dark central ground, phase contrast (π/2 and π), and field-absorption interferometers. The merits of the interferometers have been judged ad hoc by either tests with a small number of phase objects or by computer simulation. Three standardized criteria, which consolidate the work of others, are proposed to evaluate common-path interferometers: fringe visibility, fringe irradiance, and fringe accuracy. The interferometers can be described as one generic class of Fourier-plane filters and can be analyzed for all input conditions. Closed-form expressions are obtained for visibility and irradiance under the forced condition that little inaccuracy is tolerated. This analysis finds that the π-phase-contrast interferometer is a good choice if the optical phase disturbance is at least 2π; for smaller disturbances, the Π/2 filter selected by Zernike is near optimum. It is shown mathematically that the resulting fringe visibility is highly object dependent, and good results are not ensured. By allowing the optical beam to be 50% larger than the phase object, the interferometer performs well under all conditions. With this approach and a combination π-phase/field-absorption filter, interference fringe visibility is greater than 0.8 for all phase objects.  相似文献   

14.
唐翠容  武文彬  左勇  徐永 《计量学报》2014,35(4):327-330
为了解决菲涅尔光学助降系统的检测问题,提出了一种基于成像式照度探测法的菲涅尔灯发光强度测量方案,并研制了成像式照度探测装置。试验结果表明该装置可远距离对大口径、大发光角度的菲涅尔灯进行发光强度的探测,满足菲涅尔光学助降系统检测装置测量的要求。  相似文献   

15.
Hu H  Zhang F 《Applied optics》2011,50(15):2140-2144
In the measurement system of interference fringe, the nonorthogonality error is a main error source that influences the precision and accuracy of the measurement system. The detection and elimination of the error has been an important target. A novel method that only uses the cross-zero detection and the counting is proposed to detect and eliminate the nonorthogonality error in real time. This method can be simply realized by means of the digital logic device, because it does not invoke trigonometric functions and inverse trigonometric functions. And it can be widely used in the bidirectional subdivision systems of a Moiré fringe and other optical instruments.  相似文献   

16.
A new integration method suited for spatially coherent high-power laser beams is demonstrated. The integrator system is based on a mirror with two facets, one of which can vibrate under the action of a piezoelectric translator. After reflection in the faceted mirror, the beam intensity distribution is modified to obtain greater uniformity. However, because of the coherence of the reflected beamlets, this distribution is affected by an interference pattern. The active integration consists of a periodic displacement of the moving facet that causes the interference pattern to vibrate, and its contribution to the intensity profile therefore averages out (fringe visibility within a 5% range). The combination of a faceted mirror and a simple imaging system results in an intensity profile with good uniformity over large spot sizes. Both simulated and experimental results are presented, the latter showing that a final uniformity within a 10% range can be achieved and it is limited mainly by diffraction at the edges of the facets.  相似文献   

17.
We present an optical method for measuring the real-time three-dimensional (3D) translational velocity of a diffusely scattering rigid object observed through an imaging system. The method is based on a combination of the motion of random speckle patterns and regular fringe patterns. The speckle pattern is formed in the observation plane of the imaging system due to reflection from an area of the object illuminated by a coherent light source. The speckle pattern translates in response to in-plane translation of the object, and the presence of an angular offset reference wave coinciding with the speckle pattern in the observation plane gives rise to interference, resulting in a fringe pattern that translates in response to the out-of-plane translation of the object. Numerical calculations are performed to evaluate the dynamic properties of the intensity distribution and the response of realistic spatial filters designed to measure the three components of the object's translational velocity. Furthermore, experimental data are presented that demonstrate full 3D velocity measurement.  相似文献   

18.
《Journal of Modern Optics》2013,60(6):1221-1231
We propose a scheme to realize the famous two-slit gedanken experiment using photons. Measurements using optical parametric amplifiers (OPAs) are proposed to infer the probabilities that the input photon has taken a particular path in a Mach-Zehnder interferometer, without destroying the photon. Using information theory and Bayes' theorem, we find that the visibility of ensemble averaged interference fringes is inversely related to the which-path information that is made available by the OPAs. This is in agreement with the complementarity principle. A method is found to erase partially the which-path information before it is recorded; then by making conditional measurements the fringe visibility can be partially restored.  相似文献   

19.
激光干涉测量系统在精密测量领域占有重要地位,它对温度变化、大气变化、激光波长变化、机械安装误差和外界振动等比较敏感,影响系统的测量精度和稳定性。针对此情况,该文提出一种新型的激光干涉光路,两光臂呈完全共路结构,使干涉条纹信号具有极强的抗干扰能力;对光路进行抗干扰分析和理论推导;构建位移测量系统,进行系统测试实验和误差分析。实验表明,本系统测量分辨力0.72nm,合成标准不确定度5.2nm(k=2),运行速度0.56mm/s,量程0.01mm。  相似文献   

20.
Desse JM  Albe F  Tribillon JL 《Applied optics》2002,41(25):5326-5333
A new optical technique based on real-time color holographic interferometry has been developed for analyzing unsteady aerodynamic wakes in fluid mechanics or for measuring displacements and deformations in solid mechanics. The technique's feasibility is demonstrated here. It uses three coherent wavelengths produced simultaneously by a cw laser (mixed argon and krypton). Holograms are recorded on single-layer panchromatic silver halide (Slavich PFG 03C) plates. Results show the optical setup can be adjusted to obtain a uniform background color. The interference fringe pattern visualized is large and colored and exhibits a single central white fringe, which makes the zero order of the interferogram easy to identify. An application in a subsonic wind tunnel is presented, in which the unsteady wake past a cylinder is recorded at high rate.  相似文献   

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