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The Current State of Speckle Imaging.

机译:散斑成像的当前状态。

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摘要

Speckle imaging produces diffraction-limited images from ground-based telescopes. Recent, advancements in detectors such as electron-multiplying CCDs (EMCCDs), have spawned a resurgence of this technique, greatly improving sensitivity and observing efficiency. The high angular resolution provided by speckle imaging can discern blended binary system contamination and validate suspected exoplanets discovered by the Kepler and K2 transit surveys. High-resolution follow-up will also be required for upcoming missions including TESS. Multiplicity can be determined along with separation, position angle, photometry, and contrast ratio. In this way. speckle imaging can validate even small, rocky planets like TRAPPIST-1 and constrain exoplanet radii and density. Some of the developments leading to this technique will be discussed in conjunction with recent significant papers, ongoing speckle imaging programs, and prospects for the future.
机译:斑点成像从地面望远镜产生衍射限制图像。最近,诸如电子乘法CCD(EMCCDS)之类的探测器的进步产生了这种技术的重新训练,大大提高了灵敏度和观察效率。由散斑成像提供的高角度分辨率可以辨别混合的二元系统污染,并验证了开普勒和K2转运调查发现的疑似外出。即将到来的任务也将需要高分辨率随访。可以沿分离,位置角度,光度法和对比度来确定多重性。通过这种方式。斑点成像可以验证甚至是小型的岩石行星,如Trappist-1,并限制Exoplanet半径和密度。将与最近的重要文件,持续的散斑成像计划和未来的前景结合讨论导致这种技术的一些发展。

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