论文标题

带有太阳重力镜头任务的系外行星的直接多偶像素成像和光谱

Direct Multipixel Imaging and Spectroscopy of an Exoplanet with a Solar Gravity Lens Mission

论文作者

Turyshev, Slava G., Shao, Michael, Toth, Viktor T., Friedman, Louis D., Alkalai, Leon, Mawet, Dmitri, Shen, Janice, Swain, Mark R., Zhou, Hanying, Helvajian, Henry, Heinsheimer, Tom, Janson, Siegfried, Leszczynski, Zigmond, McVey, John, Garber, Darren, Davoyan, Artur, Redfield, Seth, Males, Jared R.

论文摘要

我们研究了太阳引力透镜(SGL),作为产生直接高分辨率的外型外行星图像的手段。 SGL的性质非常出色:它提供了〜1E11的最大光扩增和〜1E-10 ARCSEC的角度分辨率。在SGL焦点区域中具有1米望远镜的探针可以在30 pc上对系外行星进行成像,其表面上有10公里的分辨率,足以观察季节性变化,海洋,大陆,表面地形。我们达到并超过了所有目标的目标:我们开发了一种新的波光学方法来研究系外行星的成像,同时将它们视为扩展,解决的,微弱的,较大但有限的距离。我们正确地说明了太阳能电晕亮度。我们开发了反卷积算法,并证明了在现实条件下高质量图像重建的可行性。我们已经证明,具有SGL的系外行星的多件素成像和光谱是可行的。我们已经开发了一个新的任务概念,该概念将依靠三个创新的SGL焦点区域提供一系列光学望远镜:i)一种新的方法来启用直接系外行星成像,ii)使用Smallsats太阳能航行快速通过太阳能系统及以后的超越,iii,iii)利用了群体的建筑。这种方法可以实现全新的任务,为NASA和大型航空航天社区提供了巨大的飞跃。我们的结果令人鼓舞,因为它们为一个任务实现了现实的设计,该任务将能够在我们恒星社区中直接解决系外行星的直接解决图像。它可以允许探索依靠SGL功能数十年(如果不是几个世纪)的探索,而其他现有技术则比其他可能的时间早。向SGL强大干扰地区进行使命的建筑和任务概念是有希望的,应该进一步探讨。

We examined the solar gravitational lens (SGL) as the means to produce direct high-resolution, multipixel images of exoplanets. The properties of the SGL are remarkable: it offers maximum light amplification of ~1e11 and angular resolution of ~1e-10 arcsec. A probe with a 1-m telescope in the SGL focal region can image an exoplanet at 30 pc with 10-kilometer resolution on its surface, sufficient to observe seasonal changes, oceans, continents, surface topography. We reached and exceeded all objectives set for our study: We developed a new wave-optical approach to study the imaging of exoplanets while treating them as extended, resolved, faint sources at large but finite distances. We properly accounted for the solar corona brightness. We developed deconvolution algorithms and demonstrated the feasibility of high-quality image reconstruction under realistic conditions. We have proven that multipixel imaging and spectroscopy of exoplanets with the SGL are feasible. We have developed a new mission concept that delivers an array of optical telescopes to the SGL focal region relying on three innovations: i) a new way to enable direct exoplanet imaging, ii) use of smallsats solar sails fast transit through the solar system and beyond, iii) an open architecture to take advantage of swarm technology. This approach enables entirely new missions, providing a great leap in capabilities for NASA and the greater aerospace community. Our results are encouraging as they lead to a realistic design for a mission that will be able to make direct resolved images of exoplanets in our stellar neighborhood. It could allow exploration of exoplanets relying on the SGL capabilities decades, if not centuries, earlier than possible with other extant technologies. The architecture and mission concepts for a mission to the strong interference region of the SGL are promising and should be explored further.

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