论文标题
Maory/Morfeo和Lift:低阶波前传感器可以变成相分音传感器吗?
MAORY/MORFEO and LIFT: can the low order wavefront sensors become phasing sensors?
论文作者
论文摘要
用于ELT观测值的多种轭自适应光学继电器(Morfeo,以前称为Maory)是非常大的望远镜(ELT)的自适应光学器件(AO)模块,旨在提供1 Arcmin校正的字段,以提供多个AO OPA,用于深度观察摄像头(MICADO)和未来客户端的仪器。它应提供接近衍射极限的分辨率,并在各种大气条件下。它提供扁平波前的能力必须面对大气湍流和望远镜环境的已知方面,但也必须完全开发和建造望远镜的最终特征。在这项工作中,我们专注于与望远镜学生分割有关的问题(例如,风效应低,移交时的残留相位误差以及相关的相关问题),可能会限制系统性能。 Morfeo目前不预见一个专用的传感器来测量相邻镜像段之间的相位步长:在这项工作中,我们研究了使用线性性焦距平面技术(LIFT),使用旨在感知和校正倾斜度和焦点的低阶波沿传感器作为相位传感器。
The Multiconjugate adaptive Optic Relay For ELT Observations (MORFEO, formerly known as MAORY) is the adaptive optics (AO) module for the Extremely Large Telescope (ELT) aimed at providing a 1 arcmin corrected field to the Multi-AO Imaging CamerA for Deep Observations (MICADO) and to a future client instrument. It should provide resolution close to the diffraction limit on a large portion of the sky and in a wide range of atmospheric conditions. Its ability to provide a flat wavefront must face the known aspect of the atmospheric turbulence and telescope environment, but also the final characteristic of a telescope still to be fully developed and built. In this work we focused on issues related to the segmentation of the telescope pupil (like low wind effect, residual phasing error at handover and control related issues), that could limit the system performance. MORFEO currently does not foresee a dedicated sensor to measure the phase step between adjacent mirror segments: in this work we study the possibility to use the low order wavefront sensors designed to sense and correct tip-tilt and focus as phasing sensors thanks to the linearized focal-plane technique (LIFT).