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光程差的稳健测定:红外光学望远镜阵列干涉仪中的条纹跟踪

Robust determination of optical path difference: fringe tracking at the infrared optical telescope array interferometer.

作者信息

Pedretti Ettore, Traub Wesley A, Monnier John D, Millan-Gabet Rafael, Carleton Nathaniel P, Schloerb F Peter, Brewer Michael K, Berger Jean-Philippe, Lacasse Marc G, Ragland Sam

机构信息

Smithsonian Astrophysical Observatory, 60 Garden Street, Cambridge, Massachusetts 02138, USA.

出版信息

Appl Opt. 2005 Sep 1;44(25):5173-9. doi: 10.1364/ao.44.005173.

Abstract

We describe the fringe-packet tracking system used to equalize the optical path lengths at the Infrared Optical Telescope Array interferometer. The measurement of closure phases requires obtaining fringes on three baselines simultaneously. This is accomplished by use of an algorithm based on double Fourier interferometry for obtaining the wavelength-dependent phase of the fringes and a group-delay tracking algorithm for determining the position of the fringe packet. A comparison of data acquired with and without the fringe-packet tracker shows a factor of approximately 3 reduction of the error in the closure-phase measurement. The fringe-packet tracker has been able so far to track fringes with signal-to-noise ratios as low as 1.8 for stars as faint as mH = 7.0.

摘要

我们描述了用于在红外光学望远镜阵列干涉仪处均衡光程长度的条纹包跟踪系统。闭合相位的测量需要同时在三条基线上获取条纹。这是通过使用基于双傅里叶干涉测量法的算法来获取条纹的波长相关相位,以及使用群延迟跟踪算法来确定条纹包的位置来实现的。对有和没有条纹包跟踪器时采集的数据进行比较表明,闭合相位测量中的误差降低了约3倍。到目前为止,条纹包跟踪器已经能够跟踪信噪比低至1.8的条纹,这些条纹来自视星等低至mH = 7.0的恒星。

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