Solar Ring Mission: Building a Panorama of the Sun and Inner-heliosphere
arXiv:2210.10402 · doi:10.1016/j.asr.2022.10.045
Abstract
Solar Ring (SOR) is a proposed space science mission to monitor and study the Sun and inner heliosphere from a full 360° perspective in the ecliptic plane. It will deploy three 120°-separated spacecraft on the 1-AU orbit. The first spacecraft, S1, locates 30° upstream of the Earth, the second, S2, 90° downstream, and the third, S3, completes the configuration. This design with necessary science instruments, e.g., the Doppler-velocity and vector magnetic field imager, wide-angle coronagraph, and in-situ instruments, will allow us to establish many unprecedented capabilities: (1) provide simultaneous Doppler-velocity observations of the whole solar surface to understand the deep interior, (2) provide vector magnetograms of the whole photosphere - the inner boundary of the solar atmosphere and heliosphere, (3) provide the information of the whole lifetime evolution of solar featured structures, and (4) provide the whole view of solar transients and space weather in the inner heliosphere. With these capabilities, Solar Ring mission aims to address outstanding questions about the origin of solar cycle, the origin of solar eruptions and the origin of extreme space weather events. The successful accomplishment of the mission will construct a panorama of the Sun and inner-heliosphere, and therefore advance our understanding of the star and the space environment that holds our life.
41 pages, 6 figures, 1 table, to be published in Advances in Space Research
References in corpus (10)
- Evolution of the solar irradiance during the Holocene
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- Strong coronal channelling and interplanetary evolution of a solar storm up to Earth and Mars
- High cadence observations of a global coronal wave by EUVI/STEREO
- The Chinese Hα Solar Explorer (CHASE) mission: An overview
- CME-CME Interactions as Sources of CME Geo-effectiveness: The Formation of the Complex Ejecta and Intense Geomagnetic Storm in Early September 2017
- Super-elastic Collision of Large-scale Magnetized Plasmoids in The Heliosphere
- Solar Magnetic Flux Rope Eruption Simulated by a Data-Driven Magnetohydrodynamic Model
- The role of non-axisymmetry of magnetic flux rope in constraining solar eruptions
- The unusual widespread solar energetic particle event on 2013 August 19. Solar origin and particle longitudinal distribution