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101.
Wavelength scanned interferometry allows the simultaneous measurement of top surface shape and optical thickness variation of a transparent object consisting of several parallel surfaces. Interference signals from these surfaces can be separated in frequency space, and their phases are detected by discrete Fourier analysis. However, these signal frequencies are shifted from the detection frequency by the refractive index dispersion of the object and a nonlinearity of the wavelength scanning. The Fourier analysis is sensitive to the detuning of the signal frequency and suffers from the multiple-beam interference noise. Conventional error-compensating algorithms cannot be applied to an object consisting of more than three reflecting surfaces. We derive a new 2N-1 sample error-compensating algorithm, which allows the phase detection of any order of harmonic frequency among the interference signals. The new algorithm suppresses the effect of signal frequency detuning as well as the multiple-beam interference noise and can be applied to the measurement of complex objects consisting of more than three reflecting surfaces.  相似文献   
102.
This contribution combines a shape optimization approach to free boundary value problems of Bernoulli type with an embedding domain technique. A theoretical framework is developed which allows to prove continuous dependence of the primal and dual variables in the resulting saddle point problems with respect to the domain. This ensures the existence of a solution of a related shape optimization problem in a sufficiently large class of admissible domains.  相似文献   
103.
Experimental investigations of a type-I noncollinear phase-matched optical parametric amplification based on lithium triborate, which was pumped by a 5-ns second-harmonic pulses from a Q-switched Nd:YAG, seeded by a cw Ti:sapphire laser at 800 nm, was presented. The experiments generated 2-ns signal output pulses at 800 nm, the maximum signal output pulse energy reached 19 μJ, the corresponding parametric gain was 44 dB. Furthermore, the experiments demonstrate that the 65 nm-FWHM parametric fluorescence gain spectrum could also be observed. A quantitative account of the ultrabroadband parametric fluorescence gain spectrum was given with our theory. The experimental measurements are in agreement with theoretical calculations.  相似文献   
104.
基于分层光学扫描的三维数字化测量技术   总被引:1,自引:0,他引:1  
采用切削分层光扫描测量与计算机数据信息合成相结合的方法,有效地解决了具有复杂内外腔结构零件的三维数字化测量。该方法比传统三维测量速度快、自动化程度高,能同时准确测量零件内外腔表面,零件边缘测量误差可控制在CCD两个像素内。利用获取的铝合金精密小箱体三维数据,在计算机上重构了零件的三维模型,并用RP技术制造出了零件物理原形。  相似文献   
105.
光纤陀螺信号处理中SLD驱动电路设计   总被引:1,自引:0,他引:1  
光纤陀螺用光源要求输出功率高、相干性低、稳定性好,超辐射发光二极管(SLD)是能满足这些要求的理想光源,目前国内光纤陀螺用的光源基本上主要选择超辐射发光二极管(SLD),从工程实际应用出发,介绍了超辐射发光二极管(SLD)驱动电路设计,以此来提高光纤陀螺性能。  相似文献   
106.
107.
在磁光玻璃裸光纤偏振特性研究的基础上,研制磁光玻璃光纤,偏振特性及其在全光纤电流传感器中的应用。将采用模管法拉制成的磁光玻璃光纤置于亥姆霍兹线圈产生的磁场中,当线偏振光通过该光纤时,其偏振面旋转一定角度,把该角度转换成光信号的强度,然后再用仪器进行检测。通过对线偏振光偏振面在磁场中的偏振特性的测试与实验,提出用磁光玻璃光纤构成的全光纤电流传感器,可用于电流和磁场测试。  相似文献   
108.
A spectral interferometric optical coherence tomography (OCT) system which has polarization sensitivity is developed. This system reduces the mechanical scanning dimension by employing the principle of spectral interferometry, and measures a two dimensional cross-sectional image of biological tissue with one dimensional mechanical scanning. Sixteen OCT images with different polarization conditions are measured, and two dimensional distributions of each element of the Müller matrix of a sample to be measured are calculated.  相似文献   
109.
李湘宁  陈家璧  邹林儿 《大学物理》2003,22(6):29-30,F003
介绍了一种光学组合系统,通过构造光学系统虚拟的视场光阑实现人眼屈光度测量,它是光学系统光阑应用的生动实例.  相似文献   
110.
The educational system has gradually shifted from a face-to-face to an e-learning system, which has become prevalent in advanced countries with the advance of information technology, and connection of global networks. Accordingly, a growing demand is emerging for more reliable individual certification with technical precision in order to measure and record learning achievements and credentials of participants. The present system has a limit in terms of registration capacity, therefore, its accuracy has often been questioned. Against this background, an individual certification system is proposed particularly for access control in e-learning. Under our proposed system, a compact optical correlator for facial recognition is employed. This correlator was previously tested for of biometrics authentication accuracy and proved highly reliable, having recorded remarkably low error rates (below 1%). The recorded error rate is sufficiently robust that the system itself can be regarded as a valid and practical viable attestation system.  相似文献   
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