Responses of properties in the plasma sheet and at the geosynchronous orbit to interplanetary shock

来源 :Chinese Science Bulletin | 被引量 : 0次 | 上传用户:gaolch006
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
On July 22, 2004, the WIND spacecraft detected a typical interplanetary shock. There was sustaining weak southward magnetic field in the preshock region and the southward field was suddenly enhanced across the shock front (i.e., southward turning). When the shock impinged on the magnetosphere, the magnetospheric plasma convection was abruptly enhanced in the central plasma sheet, which was directly observed by both the TC-1 and Cluster spacecraft located in different regions. Simultaneously, the Cluster spacecraft observed that the dawn-to-dusk electric field was abruptly enhanced. The variations of the magnetic field observed by TC-1, Cluster, GOES-10 and GOES-12 that were distributed in different regions in the plasma sheet and at the geosynchronous orbit are obviously distinct. TC-1 observations showed that the magnetic intensity kept almost unchanged and the elevation angle decreased, but the Cluster spacecraft, which was also in the plasma sheet and was further from the equator, observed that the magnetic field was obviously enhanced. Simultaneously, GOES-12 located near the midnight observed that the magnetic intensity sharply increased and the elevation angle decreased, but GOES-10 located in the dawn side observed that the magnetic field was merely compressed with its three components all sharply increasing. Furthermore, the energetic proton and electron fluxes at nearly all channels observed by five LANL satellites located at different magnetic local times (MLTs) all showed impulsive enhancements due to the compression of the shock. The responses of the energetic particles were much evident on the dayside than those on the nightside. Especially the responses near the midnight were rather weak. In this paper, the possible reasonable physical explanation to above observations is also discussed. All the shock-induced responses are the joint effects of the solar wind dynamic pressure pulse and the magnetic field southward turning. On July 22, 2004, the WIND spacecraft detected a typical interplanetary shock. There was sustaining weak southward magnetic field in the preshock region and the southward field was suddenly enhanced across the shock front (ie, southward turning). When the shock impinged on the magnetosphere, the magnetospheric plasma convection was abruptly enhanced in the central plasma sheet, which was directly observed by both the TC-1 and the cluster spacecraft located in different regions. Simultaneously, the Cluster spacecraft observed that the dawn-to-dusk electric field was abruptly enhanced. The variations of the magnetic field observed by TC-1, Cluster, GOES-10 and GOES-12 that were distributed in different regions in the plasma sheet and at the geosynchronous orbit are obviously distinct. TC-1 observations showed that the magnetic intensity kept almost unchanged and the elevation angle decreased, but the cluster spacecraft, which was also in the plasma sheet and was further from the equator, o bserved that the magnetic field was obviously enhanced. Simultaneously, GOES-12 located near the midnight observed that the magnetic intensity sharply increased and elevation elevation decreased, but GOES-10 located in the dawn side observed that the magnetic field was only compressed with its three components all sharply increasing. Furthermore, the energetic proton and electron fluxes at nearly all channels observed by five LANL satellites located at different magnetic local times (MLTs) all showed impulsive enhancements due to the compression of the shock. The responses of the energetic particles Particularly much responses on the dayside than those on the nightside. Especially this responses near the midnight were rather weak. In this paper, the possible reasonable physical explanation to above observations is also discussed. All the shock-induced responses are the joint effects of the solar wind dynamic pressure pulse and the magnetic field southward turning.
其他文献
请下载后查看,本文暂不支持在线获取查看简介。为了未来的幸福生活——上海市民办瑞虹中学 Please download to view, this article does not support online access to view
期刊
教育管理工作是粗点好,还是细点好?在我们这里,已争论了多年。(1)主张粗点的同志认为,作为上级,只要抓大事、抓重点就可以了,不要管得太多。只有这样,才能充分发挥下属的积极性与创造
农村初中应根据农村实际改革教学内容,增加一些学生与家长在生产生活中能“用得着”的实用技术与信息类课程。同时大力开展教研活动,改革陈旧的教学模式与教学方法,增强学生的学
期刊
近日,日建租赁株式会社产业机械事业本部齐藤良幸先生和井上直先生拜访中国工程机械工业协会工程机械租赁分会秘书处。此行的目的在于了解中国工程机械租赁市场和二手机械市
在炎症活动期,中性白细胞、巨噬细胞等能产生氧自由基,并刺激脂类过氧化作用导致戊烷的产生。测定呼气中戊烷含量是反映器官炎症的非侵入性技术。本文旨在评估呼气中戊烷的
自6月2日中央及地方各广播、电视、报纸和网络媒体展开对王顺友事迹宣传报道以来,这个普通共产党员的质朴言行在神州大地上激起了一股股感动的热流。6月3日,各大中央新闻媒体
我院自1992年采用垂体后叶素合用硝酸甘油静滴,配以三腔二束管压迫等综合措施治疗食管静脉曲张破裂出血32例次,疗效较为满意,现报道如下。 Our hospital since 1992 with p
近来,随着企业界“做大做强”口号的流行,随着创办示范校活动的展开,一些校长也开始把“做大做强”挂在嘴边,以致出现了这样一种办学倾向:(1)金玉其外。投入了大量的资金,建
In the construction of the Qinghai-Tibet Power Transmission Line(QTPTL), cast-in-place piles(CIPPs) are widely applied in areas with unfavorable geological cond
使用短芳纶纤维增强炭黑/丁苯橡胶(AF-CB/SBR)复合材料,研究AF对复合材料疲劳行为的影响。在应力控制条件下,少量AF的加入使缺口试样的疲劳寿命提高了25.5倍;疲劳使试样的储