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首页> 外文期刊>Radio Science >A study of the strong linear relationship between the equatorial ionization anomaly and the prereversal E × B drift velocity at solar minimum
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A study of the strong linear relationship between the equatorial ionization anomaly and the prereversal E × B drift velocity at solar minimum

机译:赤道电离异常与太阳最小值前E×B漂移速度的强线性关系研究。

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摘要

It is known that there exists a linear relationship between the maximum velocity of the prereversal enhancement (PRE) of the E × B drift and the strength of the equatorial ionization anomaly (EIA) crests at night. This can be a particularly useful relationship in the event that only one of the quantities is observed. But it is important to understand the drivers of the linear relationship in order to determine its range of validity. In this study, we use the SAMI2 model of the ionosphere together with measurements of vertical E × B drift velocity at Jicamarca to show that daytime drifts significantly affect the slope and linearity of the relationship. To validate the model, nighttime O I 135.6 nm radiances measured with the Tiny Ionospheric Photometer (TIP) aboard the Constellation Observing System for Meteorology, Ionosphere, and Climate (FORMOSAT-3/COSMIC) are used in coincidence with the E×B drift measurements at Jicamarca. From the observations, we derive a linear relationship between the crest-to-trough ratio of the EIA NmF2 and the PRE under solar minimum conditions. The model simulations demonstrate that the influence of daytime drifts on the nighttime ionosphere varies with longitude and solar cycle conditions; and therefore the linear relationship also varies with these parameters. In particular, we show that the late afternoon drifts at solar minimum have the effect of steepening the slope of the linear relationship. On the other hand, the extended effect of daytime drifts under solar maximum conditions, including contributions from midmorning hours, tends to weaken the relationship.
机译:众所周知,E×B漂移的逆转增强(PRE)的最大速度与夜间赤道电离异常(EIA)波峰的强度之间存在线性关系。在仅观察到一个量的情况下,这可能是特别有用的关系。但是,重要的是要了解线性关系的驱动因素,以确定其有效范围。在这项研究中,我们使用电离层的SAMI2模型以及在Jicamarca的垂直E×B漂移速度的测量结果来表明,白天的漂移会显着影响关系的斜率和线性。为了验证该模型,在气象,电离层和气候星座观测系统(FORMOSAT-3 / COSMIC)上使用微型电离层光度计(TIP)测得的夜间OI 135.6 nm辐射与E×B漂移测量值相吻合Jicamarca。从这些观察,我们得出了在太阳最低条件下,EIA NmF2的波峰与波谷比与PRE之间的线性关系。模型仿真表明,白天漂移对夜间电离层的影响随经度和太阳周期条件的变化而变化。因此线性关系也随这些参数而变化。特别是,我们显示出下午晚些时候在太阳最低点处的漂移具有使线性关系的斜率变陡的作用。另一方面,日照最大条件下白天漂移的扩展影响,包括早晨时段的贡献,往往会减弱这种关系。

著录项

  • 来源
    《Radio Science 》 |2011年第6期| p.RS6004.1-RS6004.9| 共9页
  • 作者单位

    Space Science Division, Naval Research Laboratory, Washington, DC 20375, USA;

    Space Science Division, Naval Research Laboratory, Washington, DC 20375, USA;

    Space Science Division, Naval Research Laboratory, Washington, DC 20375, USA;

    Cooperative Institute for Research in Environmental Sciences, University of Colorado at Boulder, Boulder, Colorado, USA,Space Weather Prediction Center, NOAA, Boulder, CO 80305, USA;

    Cooperative Institute for Research in Environmental Sciences, University of Colorado at Boulder, Boulder, Colorado, USA,Space Weather Prediction Center, NOAA, Boulder, CO 80305, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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