...
首页> 外文期刊>Solar physics >Interplanetary and ionosphere scintillation monitoring of radio sources ensemble at the solar activity minimum
【24h】

Interplanetary and ionosphere scintillation monitoring of radio sources ensemble at the solar activity minimum

机译:在太阳活动最小时对放射源的行星际和电离层闪烁监测

获取原文
获取原文并翻译 | 示例

摘要

Results are presented of twenty-four-hour interplanetary and ionosphere scintillation monitoring obtained in Pushchino Radioastronomy Observatory during three observation series: between 18 November and 30 December 2006; between 11 June and 18 June 2007; between 20 October and 4 November 2008. Observations were carried out simultaneously in 16 beams of the radio telescope BSA LPI (Big Scanning Array of Lebedev Physical Institute) at the frequency 111 MHz. All the sources with scintillating flux greater than 0.2 Jy were recorded in the range of declination from +3° to +12°40 by observations in the years 2006, 2008 and from 21° to 28° in the year 2007. The values of radio source flux fluctuation temporal structure functions were measured at the temporal lags of 0.1 s, 1 s and 10 s, which characterize noise, interplanetary scintillations and ionosphere scintillations, respectively. About 1000 scintillating radio sources were observed every day. The number of sources N (σ_(IPS)≥σ_(IPS,0)) with scintillating flux σ_(IPS) greater than the given value σ_(IPS,0) in the sky area with sizes 8° in declination and 0.5 hours in right ascension was used as the parameter describing turbulent interplanetary plasma. This parameter is shown to be proportional to the mean scintillation index of the radio source statistical ensemble in the given sky area. Similarly, the parameter N (σ_(IONS)≥σ_(IONS,0)) was introduced for a description of the turbulent ionosphere. The mean twenty-four-hour temporal dependence of the scintillation index is found. Weak day-to-day variations of the scintillation index were observed. In general, interplanetary plasma, as well as the ionosphere, was in a quiet state during the observation periods. Unusually a weak dependence of scintillation index on the position of the sources relative to the Sun was observed in the year 2008 at very deep solar activity minimum. Such a weak dependence is explained by a strong elongation of the turbulence level spatial distribution along the solar equatorial plane during a very deep minimum of solar activity.
机译:呈现的结果是在2006年11月18日至12月30日期间的三个观测系列中,在普希金诺射电天文台获得的24小时行星际和电离层闪烁监测结果。在2007年6月11日至6月18日期间;在2008年10月20日至11月4日之间。在16束射电望远镜BSA LPI(列别捷夫物理学院的大扫描阵列)中以111 MHz的频率同时进行了观测。通过2006年,2008年和2007年从21°至28°的观测,记录了所有闪烁通量大于0.2 Jy的源,其偏角范围为+ 3°至+ 12°40。在0.1 s,1 s和10 s的时间滞后测量了源通量波动的时间结构函数,这些滞后分别表征了噪声,行星际闪烁和电离层闪烁。每天大约观察到1000个闪烁的无线电源。在偏斜为8°的天空区域中,闪烁通量σ_(IPS)大于给定值σ_(IPS,0)的源N(σ_(IPS)≥σ_(IPS,0))的数量右提升被用作描述湍流行星际等离子体的参数。该参数显示为与给定天空区域中无线电源统计集合的平均闪烁指数成比例。类似地,引入参数N(σ_(IONS)≥σ_(IONS,0))来描述湍流电离层。发现闪烁指数的平均二十四小时的时间依赖性。观察到闪烁指数的每日变化很小。通常,在观测期间,行星际等离子体以及电离层处于安静状态。通常,在极深的太阳活动最低点,2008年观测到闪烁指数对光源相对于太阳的位置的依赖性很弱。如此弱的依赖性是由于在太阳活动极深的极小时期内沿太阳赤道平面的湍流能级空间分布的强烈延伸而解释的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号