Blind N, Le Coarer E, Kern P, Gousset S
Opt Express. 2017 Oct 30;25(22):27341-27369. doi: 10.1364/OE.25.027341.
The next generation of extremely large telescopes (ELT), with diameters up to 39 meters, is planned to begin operation in the next decade and promises new challenges in the development of instruments since the instrument size increases in proportion to the telescope diameter D, and the cost as D or faster. The growing field of astrophotonics (the use of photonic technologies in astronomy) could solve this problem by allowing mass production of fully integrated and robust instruments combining various optical functions, with the potential to reduce the size, complexity and cost of instruments. Astrophotonics allows for a broad range of new optical functions, with applications ranging from sky background filtering, high spatial and spectral resolution imaging and spectroscopy. In this paper, we want to provide astronomers with valuable keys to understand how photonics solutions can be implemented (or not) according to the foreseen applications. The paper introduces first key concepts linked to the characteristics of photonics technologies, placed in the framework of astronomy and spectroscopy. We then describe a series of merit criteria that help us determine the potential of a given micro-spectrograph technology for astronomy applications, and then take an inventory of the recent developments in integrated micro-spectrographs with potential for astronomy. We finally compare their performance, to finally draw a map of typical science requirements and pin the identified integrated technologies on it. We finally emphasize the necessary developments that must support micro-spectrograph in the coming years.
下一代直径达39米的极大望远镜(ELT)计划在未来十年开始运行,这将给仪器开发带来新挑战,因为仪器尺寸与望远镜直径D成正比增加,成本则随D的增加而增加甚至更快。天体光子学(在天文学中使用光子技术)这一不断发展的领域可以解决这个问题,它能够大规模生产集成各种光学功能的坚固仪器,有望减小仪器的尺寸、降低其复杂性和成本。天体光子学提供了广泛的新光学功能,应用范围涵盖从天空背景滤波、高空间和光谱分辨率成像到光谱学等领域。在本文中,我们希望为天文学家提供有价值的要点,以了解如何根据预期应用来实施(或不实施)光子学解决方案。本文首先介绍与光子学技术特性相关的关键概念,并将其置于天文学和光谱学的框架内。然后,我们描述一系列优点标准,这些标准有助于我们确定特定微光谱仪技术在天文学应用中的潜力,接着盘点具有天文学应用潜力的集成微光谱仪的最新进展。我们最后比较它们的性能,最终绘制出典型科学需求图,并将已确定的集成技术标注在图上。我们最后强调未来几年必须支持微光谱仪发展的必要进展。