物理
自适应光学
光学
天文
波长
分辨率(逻辑)
遥感
人工智能
计算机科学
地质学
作者
Changhui Rao,Lei Zhu,Naiting Gu,Xuejun Rao,Lanqiang Zhang,Hua Bao,Lin Kong,Youming Guo,Libo Zhong,Xue’an Ma,Mei Li,Cheng Wang,Xiaojun Zhang,Xinlong Fan,Donghong Chen,Zhongyi Feng,Xiaoyun Wang,Zhiyong Wang
标识
DOI:10.3847/1538-3881/aa84b4
摘要
Abstract A high-resolution multi-wavelength simultaneous imaging system from visible to near-infrared bands with a solar adaptive optics system, in which seven imaging channels, including the G band (430.5 nm), the Na i line (589 nm), the H α line (656.3 nm), the TiO band (705.7 nm), the Ca ii IR line (854.2 nm), the He i line (1083 nm), and the Fe i line (1565.3 nm), are chosen, is developed to image the solar atmosphere from the photosphere layer to the chromosphere layer. To our knowledge, this is the solar high-resolution imaging system with the widest spectral coverage. This system was demonstrated at the 1 m New Vaccum Solar Telescope and the on-sky high-resolution observational results were acquired. In this paper, we will illustrate the design and performance of the imaging system. The calibration and the data reduction of the system are also presented.
科研通智能强力驱动
Strongly Powered by AbleSci AI