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Implementation of an intensity interferometry system on the StarBase observatory

机译:在StarBase天文台上实现强度干涉测量系统

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A modern implementation of a stellar intensity interferometry (SⅡ) system on an array of large optical telescopes would be a highly valuable complement to the current generation of optical amplitude interferometers. The SⅡ technique allows for observations at short optical wavelengths (U/B/V bands) with potentially dense (u,v) plane coverage. We describe a complete SⅡ system that is used to measure the spatial coherence of a laboratory source which exhibits signal to noise ratios comparable to actual stellar sources. A novel analysis method, based on the correlation measurements between orthogonal polarization states, was developed to remove unwanted effects of spurious correlations. Our system is currently being tested in night sky observations at the StarBase Observatory (Grantsville, Utah) and will soon be ported to the VERITAS (Amado, AZ) telescopes. The system can readily be integrated with current optical telescopes at minimal cost. The work here serves as a technological pathfinder for implementing SII on the future Cherenkov Telescope Array.
机译:在大型光学望远镜阵列上现代实现恒星强度干涉测量(SⅡ)系统,将是对当前一代光学幅度干涉仪的高度有价值的补充。 SⅡ技术允许在短光波长(U / B / V波段)上观察,并具有可能密集的(u,v)平面覆盖。我们描述了一个完整的SⅡ系统,该系统用于测量实验室信号源的空间相干性,该信号源的信噪比可与实际恒星信号源相媲美。一种新型的分析方法,基于正交极化状态之间的相关测量,被开发出来,以消除杂散相关的有害影响。目前,我们的系统正在StarBase天文台(犹他州格兰特斯维尔)的夜空观测中进行测试,并将很快移植到VERITAS(亚利桑那州阿马多)望远镜。该系统可以很容易地以最小的成本与当前的光学望远镜集成在一起。这里的工作是在未来的Cherenkov望远镜阵列上实施SII的技术探索者。

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