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
Main Authors 孔令高, 苏斌, 关燚炳, 白伟华, 张爱兵, Kong Linggao, Su, Bin, Guan Yibing, Bai Weihua, Zhang, Aibing
Format Journal Article
LanguageChinese
Published Beijing Editorial Office of Reviews of Geophysics and Planetary Physics 01.01.2021
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ISSN2097-1893
DOI10.19975/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.
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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StartPage 459
SubjectTerms Magnetic fields
Remote sensing
Title 行星等离子体探测技术
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