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Astrometry and Photometry with Coronagraphs

机译:冠冕仪的占星术和光度法

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摘要

We propose a solution to the problem of astrometric and photometric calibration of coronagraphic images with a simple optical device which, in theory, is easy to use. Our design uses the Fraunhofer approximation of Fourier optics. Placing a periodic grid of wires (we use a square grid) with known width and spacing in a pupil plane in front of the occulting coronagraphic focal plane mask produces fiducial images of the obscured star at known locations relative to the star. We also derive the intensity of these fiducial images in the coronagraphic image. These calibrator images can be used for precise relative astrometry, to establish companionship of other objects in the field of view through measurement of common proper motion or common parallax, to determine orbits, and to observe disk structure around the star quantitatively. The calibrator spots also have known brightness, selectable by the coronagraph designer, permitting accurate relative photometry in the coronagraphic image. This technique, which enables precision exoplanetary science, is relevant to future coronagraphic instruments, and is particularly useful for `extreme' adaptive optics and space-based coronagraphy.
机译:我们提出一种解决方案,采用理论上易于使用的简单光学设备,对日冕图像进行天体和光度校准。我们的设计使用傅立叶光学的Fraunhofer近似。将一个具有已知宽度和间距的周期性金属线栅格(我们使用正方形栅格)放置在潜伏式冠状焦平面遮罩前面的光瞳平面中,可在相对于恒星的已知位置产生被遮盖恒星的基准图像。我们还可以得出冠状图像中这些基准图像的强度。这些校准器图像可用于精确的相对天文测量,通过测量共同的固有运动或共同的视差来建立视场中其他物体的相伴关系,确定轨道,并定量观察恒星周围的盘状结构。校准光斑还具有已知的亮度,可以由电晕仪设计者选择,从而可以在电晕图像中进行准确的相对光度测定。这项技术可以实现精确的系外行星科学,与未来的日冕仪有关,并且对“极端”自适应光学和天基日冕仪特别有用。

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