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The GRAVITY metrology system: narrow-angle astrometry via phase-shift ing interferometry

机译:重力计量系统:通过相移干涉仪进行的窄角天文测量

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The VLTI instrument GRAVITY will provide very powerful astrometry by combining the light from four telescopes for two objects simultaneously. It will measure the angular separation between the two astronomical objects to a precision of 10 μas. This corresponds to a differential optical path difference (dOPD) between the targets of few nanometers and the paths within the interferometer have to be maintained stable to that level. For this purpose, the novel metrology system of GRAVITY will monitor the internal dOPDs by means of phase-shifting interferometry. We present the four-step phase-shifting concept of the metrology with emphasis on the method used for calibrating the phase shifts. The latter is based on a phase-step insensitive algorithm which unambiguously extracts phases in contrast to other methods that are strongly limited by non-linearities of the phase-shifting device. The main constraint of this algorithm is to introduce a robust ellipse fitting routine. Via this approach we are able to measure phase shifts in the laboratory with a typical accuracy of λ/2000 or 1 nm of the metrology wavelength.
机译:VLTI仪器GRAVITY通过将来自四个望远镜的光同时组合到两个物体上,将提供非常强大的天体测量技术。它将测量两个天文物体之间的角距,精度为10μas。这对应于几纳米的目标之间的差分光程差(dOPD),并且干涉仪内的光路必须保持稳定到该水平。为此,新型的GRAVITY计量系统将通过相移干涉术监测内部dOPD。我们介绍了计量学的四步相移概念,重点是用于校准相移的方法。后者基于相移不敏感算法,与其他受相移设备非线性严重限制的方法相比,该算法可以明确地提取相位。该算法的主要约束是引入鲁棒的椭圆拟合程序。通过这种方法,我们能够在实验室中以典型的λ/ 2000或计量波长1 nm的精度测量相移。

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