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Simulation of ENA Imaging Measurements on a Geosynchronous Orbit

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摘要 Geosynchronous orbit is located in the ring current region,where the energetic particle emission environment challenges the ion deflection design limit of the Energetic Neutral Atom(ENA)imager.Therefore,there is no measurement record of ENA imaging in this area before.On the basis of possessing the patent of high-energy ion deflection technology,ENA imaging under different Kp index in geosynchronous orbit is simulated.The simulation images show the characteristics of low-altitude ENA emission source and the rough sketch of magnetosphere.Due to the north-south conjugation observation of geosynchronous orbit,the simulated ENA images at different positions all have north-south symmetry.Aiming at the unsolved problems,such as the input source of ring current energetic ions during geomagnetic activities and its evolution process,we analyzed the possible results of ENA imaging combined with in-situ particle measurements in the same satellite,as well as the subversion effect of any north-south asymmetry of ENA map on the inversion model.
出处 《空间科学学报》 CAS CSCD 北大核心 2022年第5期884-890,共7页 Chinese Journal of Space Science
基金 Supported by National Key R&D Program of China(2020YFE0202100) National Mission/Other National Mission:Research on Key Technologies of the Outer Heliospheric Space Exploration System(Y91 Z100102) National Mission/National Major Science and Technology Project:CE-7 Relay Satellite Display Neutral Atom Imager(E16504B31S)。
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  • 1Belian R D, Gisler G R, Cayton T E, Christensen R A. 1992. High-Z ener- getic particles at geostationary orbit during the great solar proton event series of October 1989. J Geophys Res, 97: 16897, doi: 10.1029/92JA01139.
  • 2C:son Brandt P, Demajistre R, Roelof E C, Ohtani S, Mitchell D G. 2002a. IMAGE/high- energy energetic neutral atom: Global energetic neutral atom imaging of the plasma sheet and ring current during substorms. J Geophys Res, 107: 1454, doi: 10.1029/2002JA009307.
  • 3C:son Brandt P, Ohtani S, Mitchell D G, Demajistre R, Roelof E C. 2002b. ENA observations of a global substorm growth phase dropout in the nightside magnetosphere. Geophys Res Lett, 29, doi: 10.1029/2002GL015057.
  • 4Daglis I A, Thorne R M, Baumjohann W, Orsini S. 1999. The terrestrial ring current: Origin, formation, and decay. Rev Geophys, 37:407438.
  • 5Delcourt D C. 2002. Particle acceleration by inductive electric fields in the inner magnetosphere. J Astrophy, 64:551-559.
  • 6Echer E, Gonzalez W D, Tsurutani B T. 2008. Interplanetary conditions leading to Superintense geomagnetic storms (Dst<-250 nT) during so- lar cycle 23. Geophy Re Let, 35: L06S03, doi: 10.1029/2007GL031755.
  • 7Fu H S, Khotyaintsev Y V, Andr6 M, Vaivads A. 2011. Fermi and betatron acceleration of suprathermal electrons behind dipolarization fronts. Geophys Res Lett, 38: L16104, doi: 10.1029/2011 GL048528.
  • 8Fu H S, Khotyaintsev Y V, Vaivads A, Andr6 M, Sergeev V, Huang S Y, Kronberg E A, Daly P W. 2012a. Pitch angle distribution of suprather- mal electrons behind dipolarization fronts: A statistical overview. J Geophys Res, 117:A12221.
  • 9Fu H S, Khotyaintsev Y V, Vaivads A, Andr6 M, Huang S Y. 2012b. Elec- tric structure of dipolarization front at sub-proton scale. Geophys Res Lett, 39:L06105.
  • 10Hori T, Lui A T Y, Ohtani S, C:son Brandt P, Mauk B H, McEntire R W, Maezawa K, Mukai T, Kasaba Y, Hayakawa H. 2005. Storm-time con- vection electric field in the near-Earth plasma sheet. J Geophys Res, 110:A04213.

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