The Solar Close Observations and Proximity Experiments (SCOPE) mission
Abstract
The Solar Close Observations and Proximity Experiments (SCOPE) mission will send a spacecraft into the solar atmosphere at a low altitude of just 5 R_sun from the solar center. It aims to elucidate the mechanisms behind solar eruptions and coronal heating, and to directly measure the coronal magnetic field. The mission will perform in situ measurements of the current sheet between coronal mass ejections and their associated solar flares, and energetic particles produced by either reconnection or fast-mode shocks driven by coronal mass ejections. This will help to resolve the nature of reconnections in current sheets, and energetic particle acceleration regions. To investigate coronal heating, the mission will observe nano-flares on scales smaller than 70 km in the solar corona and regions smaller than 40 km in the photosphere, where magnetohydrodynamic waves originate. To study solar wind acceleration mechanisms, the mission will also track the process of ion charge-state freezing in the solar wind. A key achievement will be the observation of the coronal magnetic field at unprecedented proximity to the solar photosphere. The polar regions will also be observed at close range, and the inner edge of the solar system dust disk may be identified for the first time. This work presents the detailed background, science, and mission concept of SCOPE and discusses how we aim to address the questions mentioned above.
Cite
@article{arxiv.2511.22472,
title = {The Solar Close Observations and Proximity Experiments (SCOPE) mission},
author = {Jun Lin and Jing Feng and Zhenhua Ge and Jiang Tian and Yuhao Chen and Xin Cheng and Hui Tian and Jiansen He and Alexei Pevtsov and Haisheng Ji and Shangbin Yang and Parida Hashim and Bin Zhou and Yiteng Zhang and Shenyi Zhang and Xi Lu and Yuan Yuan and Liu Liu and Haoyu Wang and Hu Jiang and Lei Deng and Xingjian Shi and Lin Ma and Jingxing Wang and Shanjie Huang and Xiaoshi Zhang and Hao Yang and Zhonghua Yao and He Zhang and Yuanming Miao and Lei Ni and Zhixing Mei and Jing Ye and Yan Li},
journal= {arXiv preprint arXiv:2511.22472},
year = {2025}
}
Comments
27 pages, 15 figures