论文标题
关于干涉法及以后的天体触电状态的报告
A report on the status of astrophotonics for interferometry and beyond
论文作者
论文摘要
长基线干涉法和高分辨率光谱是从天体摄影设备中受益的两个示例,但是应用范围正在扩展到其他亚群体和其他波长范围。 VLTI一直是开创性的天文基础设施之一,用于利用天体仪器仪器对高角度分辨率干涉量学观察的潜力,而在未来ELT的背景下,新的机会将出现。在这项贡献中,我回顾了有关基于光子的解决方案与天文仪器之间相互作用的当前最新技术状况,并突出了该领域的增长,以及在最近的战略调查中的认可,例如decadal。我将使用光刻或激光编写技术来解释不同技术平台的好处。我将回顾该领域的最新结果,涵盖了模拟,实验室表征和天上的原型制作。在即将到来的新的基于地面天文学设施的时代以及太空科学领域,天体pos虫可能具有独特的作用。
Long-baseline interferometry and high-resolution spectroscopy are two examples of areas that have benefited from astrophotonics devices, but the application range is expanding to other subareas and other wavelength ranges. The VLTI has been one of the pioneering astronomical infrastructure to exploit the potential of astrophotonics instrumentation for high-angular resolution interferometric observations, whereas new opportunities will arise in the context of the future ELTs. In this contribution, I review the current state of the art regarding the interplay between photonic-based solutions and astronomical instrumentation and highlight the growth of the field, as well as its recognition in recent strategy surveys such as the Decadal. I will explain the benefits of different technological platforms making use of photolithography or laser-writing techniques. I will review the most recent results in the field covering simulations, laboratory characterization and on-sky prototyping. Astrophotonics may have a unique role to play in the forthcoming era of new ground-based astronomical facilities, and possibly in the field of space science.