论文标题

使用SCEXAO/MEC探测自适应光学图像中的光子统计数据

Probing Photon Statistics in Adaptive Optics Images with SCExAO/MEC

论文作者

Steiger, Sarah, Brandt, Timothy D., Guyon, Olivier, Swimmer, Noah, Walter, Alexander B., Bockstiegel, Clinton, Lozi, Julien, Deo, Vincent, Vievard, Sebastien, Skaf, Nour, Ahn, Kyohoon, Jovanovic, Nemanja, Martinache, Frantz, Mazin, Benjamin A.

论文摘要

我们提出了一项针对位于Subaru望远镜上Subaru Coronagraphic Extreme Adaptive Optics System(SCEXAO)后面的微波动力学探测器(MKID)外行摄像头(MKID)外行摄像头(MEC)的光子统计研究的实验研究。我们表明,MEC测量了轴心伴随强度和离轴强度的预期分布,这些强度表现为图像平面中的准静态斑点,目前限制了高对比度成像性能。由于MKID探测器的光子计数功能,可以通过任何MEC观察结果探测这些统计数据。光子到达时间统计量也可用于使用称为随机斑点歧视(SSD)的后处理技术直接将伴侣与斑点区分开。在这里,我们概述了SSD技术,并在扩展源 - Protoplanetary Disk Ab Aurigae上突出显示了SSD的首次演示。然后,我们提出了对称为Photon-Counting SSD(PCSSD)的SSD技术延伸的当前限制提供深入探索的模拟,为将PCSSD从模拟转换为SKY结果提供了前进的路径。最后,我们讨论了如何进一步提高适用于MKIDS以及其他高速天文摄像机的这种基于时间的后处理技术的功效。

We present an experimental study of photon statistics for high-contrast imaging with the Microwave Kinetic Inductance Detector (MKID) Exoplanet Camera (MEC) located behind the Subaru Coronagraphic Extreme Adaptive Optics System (SCExAO) at the Subaru Telescope. We show that MEC measures the expected distributions for both on-axis companion intensity and off-axis intensity which manifests as quasi-static speckles in the image plane and currently limits high-contrast imaging performance. These statistics can be probed by any MEC observation due to the photon-counting capabilities of MKID detectors. Photon arrival time statistics can also be used to directly distinguish companions from speckles using a post-processing technique called Stochastic Speckle Discrimination (SSD). Here, we we give an overview of the SSD technique and highlight the first demonstration of SSD on an extended source -- the protoplanetary disk AB Aurigae. We then present simulations that provide an in-depth exploration as to the current limitations of an extension of the SSD technique called Photon-Counting SSD (PCSSD) to provide a path forward for transitioning PCSSD from simulations to on-sky results. We end with a discussion of how to further improve the efficacy of such arrival time based post-processing techniques applicable to both MKIDs, as well as other high speed astronomical cameras.

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