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Simultaneous wavenumber measurement and coherence detection using temporal phase unwrapping

机译:使用时间相位展开同时进行波数测量和相干检测

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Wavelength scanning interferometry and swept-source optical coherence tomography require accurate measurement of time-varying laser wavenumber changes. We describe here a method based on recording interferograms of multiple wedges to provide simultaneously high wavenumber resolution and immunity to the ambiguities caused by large wavenumber jumps. All the data required to compute a wavenumber shift are provided in a single image, thereby allowing dynamic wavenumber monitoring. In addition, loss of coherence of the laser light is detected automatically. The paper gives details of the analysis algorithms that are based on phase detection by a two-dimensional Fourier transform method followed by temporal phase unwrapping and correction for optical dispersion in the wedges. A simple but robust method to determine the wedge thicknesses, which allows the use of low-cost optical components, is also described. The method is illustrated with experimental data from a Ti:sapphire tunable laser, including indepen- dent wavenumber measurements with a commercial wavemeter. A root mean square (rms) difference in measured wavenumber shift between the two of approx4 m~(-1) has been achieved, equivalent to an rms wave- length shift error of approx0.4 pm.
机译:波长扫描干涉法和扫频光学相干断层扫描需要精确测量随时间变化的激光波数变化。我们在这里描述一种基于记录多个楔形干涉图的方法,以同时提供高波数分辨率和对大波数跳跃所引起的歧义的免疫力。在单个图像中提供了计算波数偏移所需的所有数据,从而允许动态波数监控。另外,自动检测到激光的相干性损失。本文详细介绍了基于二维傅里叶变换方法进行相位检测,然后进行时间相位解缠和对楔中光学色散进行校正的分析算法。还描述了一种简单但可靠的确定楔形厚度的方法,该方法允许使用低成本的光学组件。用Ti:蓝宝石可调激光器的实验数据说明了该方法,包括使用商用波长计进行的独立波数测量。已经获得了两者之间测得的波数偏移的均方根(rms)差约为4 m〜(-1),相当于rms波长偏移误差约为0.4 pm。

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