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Absolute distance metrology with frequency sweeping interferometry

机译:扫频干涉仪的绝对距离测量

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Coherent interferometric absolute distance metrology is one of the most interesting techniques for length metrology. Without any movement, measurements are made without ambiguity, by using either one or several synthetic wavelengths resulting from the beating of two or more wavelengths (multiple wavelength interferometry) or, in the case of frequency sweeping interferometry (FSI), from a frequency sweep. FSI-based sensors are relatively simple devices and can fulfill an important role on the metrology chain, even for very small relative errors in the context of demanding applications (such as space). In addition, their parameterization flexibility allows tradeoffs to be performed, either technology driven or application related. In the context of the ESA/Darwin technology package, we implemented a FSI sensor composed of a mode-hop free frequency sweep external cavity diode laser, a high finesse Fabry-Perot interferometer to measure accurately the frequency sweep range, homodyne detection and data processing. In this paper, we present in detail the uncertainty budget for the FSI final uncertainty, give examples of different parameterizations, and demonstrate and evaluate sensor performances and robustness for the high precision optical metrology for the Darwin satellite configuration.
机译:相干干涉绝对距离度量是长度度量中最有趣的技术之一。无需任何移动,就可以通过使用两个或多个波长(多波长干涉测量法)打出的一个或几个合成波长(多波长干涉测量法),或者在扫频干涉测量法(FSI)的情况下通过扫频来进行测量。基于FSI的传感器是相对简单的设备,即使在要求苛刻的应用程序(例如空间)的情况下,即使相对误差很小,也可以在计量链中发挥重要作用。此外,它们的参数化灵活性允许执行折衷,既可以技术驱动,也可以与应用相关。在ESA /达尔文技术包的背景下,我们实现了FSI传感器,该传感器由无跳模扫频外腔二极管激光器,高精细Fabry-Perot干涉仪组成,可精确测量扫频范围,零差检测和数据处理。在本文中,我们详细介绍了FSI最终不确定性的不确定性预算,给出了不同参数化的示例,并演示和评估了针对达尔文卫星配置的高精度光学计量技术的传感器性能和鲁棒性。

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