星际尘埃与日球层科学在星际探测器任务中的协同效应
天体物理仪器与方法
2023-08-22 v1 地球与行星天体物理
太阳与恒星天体物理
摘要
我们讨论了日球层科学与尘埃科学之间的协同效应、开放科学问题、技术努力以及在未来十年中维持或发展的重要规划事项。特别地,我们阐明了如何将太阳系内的星际尘埃作为(动态)日球层特性的示踪物,并强调宇宙尘埃在日球层与星周层物理中作用这一尚待充分探索但潜在重要的科学问题。我们表明,配备专用尘埃载荷的星际探测器任务将为星际尘埃研究带来前所未有的进展,并可通过测量尘埃为日球层科学作出贡献。尤其当与太阳系内其他任务协同工作时,可利用空间中的多个观测点来测量尘埃“滚入”日球层的过程,从而很好地实现这一点。太阳系内部与外部任务间的此类协同对于厘清随空间与时间变化的尘埃流至关重要。最后,我们强调了相关仪器及其对解答上述研究问题的适用性。
引用
@article{arxiv.2308.10728,
title = {Synergies between interstellar dust and heliospheric science with an Interstellar Probe},
author = {Veerle J. Sterken and Silvan Hunziker and Kostas Dialynas and Jan Leitner and Maximilian Sommer and Ralf Srama and Lennart R. Baalmann and Aigen Li and Konstantin Herbst and André Galli and Pontus Brandt and My Riebe and Jack Baggaley and Michel Blanc and Andrej Czechowski and Frederic Effenberger and Brian Fields and Priscilla Frisch and Mihaly Horanyi and Hsiang-Wen Hsu and Nozair Khawaja and Harald Krüger and Bill S. Kurth and Niels F. W. Ligterink and Jeffrey L. Linsky and Casey Lisse and David Malaspina and Jesse A. Miller and Merav Opher and Andrew R. Poppe and Frank Postberg and Elena Provornikova and Seth Redfield and John Richardson and Michael Rowan-Robinson and Klaus Scherer and Mitchell M. Shen and Jon D. Slavin and Zoltan Sternovsky and Gunter Stober and Peter Strub and Jamey Szalay and Mario Trieloff},
journal= {arXiv preprint arXiv:2308.10728},
year = {2023}
}
备注
18 pages, 7 Figures, 5 Tables. Originally submitted as white paper for the National Academies Decadal Survey for Solar and Space Physics 2024-2033