行星等离子体探测技术
等离子体是行星空间环境的基本要素之一. 行星等离子体环境与行星的磁场环境和大气环境密切相关. 等离子体环境探测有助于了解行星环境的演化历史和机制. 行星等离子体探测经过几十年的发展,技术发展相对成熟,形成了以原位和遥感探测相结合的局面,大大提升了人类对行星环境的认知. 原位探测以静电分析技术和磁场分析为主,遥感探测以无线电遥感为主. 本文结合典型行星探测计划的等离子体探测载荷,介绍了行星等离子体探测技术的发展现状,总结了行星等离子体探测技术未来发展趋势....
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Published in | 地球与行星物理论评 Vol. 52; no. 5; p. 459 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | Chinese |
Published |
Beijing
Editorial Office of Reviews of Geophysics and Planetary Physics
01.01.2021
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Subjects | |
Online Access | Get full text |
ISSN | 2097-1893 |
DOI | 10.19975/j.dqyxx.2021-020 |
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Abstract | 等离子体是行星空间环境的基本要素之一. 行星等离子体环境与行星的磁场环境和大气环境密切相关. 等离子体环境探测有助于了解行星环境的演化历史和机制. 行星等离子体探测经过几十年的发展,技术发展相对成熟,形成了以原位和遥感探测相结合的局面,大大提升了人类对行星环境的认知. 原位探测以静电分析技术和磁场分析为主,遥感探测以无线电遥感为主. 本文结合典型行星探测计划的等离子体探测载荷,介绍了行星等离子体探测技术的发展现状,总结了行星等离子体探测技术未来发展趋势. |
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AbstractList | 等离子体是行星空间环境的基本要素之一. 行星等离子体环境与行星的磁场环境和大气环境密切相关. 等离子体环境探测有助于了解行星环境的演化历史和机制. 行星等离子体探测经过几十年的发展,技术发展相对成熟,形成了以原位和遥感探测相结合的局面,大大提升了人类对行星环境的认知. 原位探测以静电分析技术和磁场分析为主,遥感探测以无线电遥感为主. 本文结合典型行星探测计划的等离子体探测载荷,介绍了行星等离子体探测技术的发展现状,总结了行星等离子体探测技术未来发展趋势. |
Author | 关燚炳 Su, Bin 张爱兵 孔令高 Bai Weihua 白伟华 Kong Linggao 苏斌 Zhang, Aibing Guan Yibing |
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Snippet | 等离子体是行星空间环境的基本要素之一. 行星等离子体环境与行星的磁场环境和大气环境密切相关. 等离子体环境探测有助于了解行星环境的演化历史和机制. 行星等离子体探测经过几十年的发展,技术发展相对成熟,形成了以原位和遥感探测相结合的局面,大大提升了人类对行星环境的认知.... |
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Title | 行星等离子体探测技术 |
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