极大望远镜上的可见光极端自适应光学:面向探测比邻星 b 及类地行星中的氧
地球与行星天体物理
2023-09-06 v1 天体物理仪器与方法
摘要
展望未来的地基系外地球成像,可见光极端自适应光学(ExAO)需要核心技术的发展,以实现在可见光下观测岩质行星上的氧等大气特征。UNDERGROUND(Ultra-fast AO techNology Determination for Exoplanet imageRs from the GROUND,地基系外行星成像器超快自适应光学技术确定)是 2023 年 2 月在最优系外行星成像仪洛伦兹研讨会建立的一个合作项目,旨在(1)将比邻星 b 及类地行星中的氧探测作为高对比度成像和直接光谱学的一个有信息量的科学案例加以推动,(2)概述可见光系外行星成像仪领域的现状,以及(3)设定实现该目标的仪器要求并明确哪些关键技术需要进一步开发。
引用
@article{arxiv.2309.00725,
title = {Visible extreme adaptive optics on extremely large telescopes: Towards detecting oxygen in Proxima Centauri b and analogs},
author = {J. Fowler and Sebastiaan Y. Haffert and Maaike A. M. van Kooten and Rico Landman and Alexis Bidot and Adrien Hours and Mamadou N'Diaye and Olivier Absil and Lisa Altinier and Pierre Baudoz and Ruslan Belikov and Markus Johannes Bonse and Kimberly Bott and Bernhard Brandl and Alexis Carlotti and Sarah L. Casewell and Elodie Choquet and Nicolas B. Cowan and Niyati Desai and David Doelman and Kevin Fogarty and Timothy D. Gebhard and Yann Gutierrez and Olivier Guyon and Olivier Herscovici-Schiller and Roser Juanola-Parramon and Matthew Kenworthy and Elina Kleisioti and Lorenzo Konig and Mariya Krasteva and Iva Laginja and Lucie Leboulleux and Johan Mazoyer and Maxwell A. Millar-Blanchaer and David Mouillet and Emiel Por and Laurent Pueyo and Frans Snik and Dirk van Dam and Kyle van Gorkom and Sophia R. Vaughan},
journal= {arXiv preprint arXiv:2309.00725},
year = {2023}
}
备注
SPIE Proceeding: 2023 / 12680-67