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Response of the low ionosphere to X-ray and Lyman-α solar flare emissions

机译:x射线和响应的低电离层莱曼-α太阳耀斑的排放

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Using soft X-ray measurements from detectors onboard the Geostationary Operational Environmental Satellite (GOES) and simultaneous high-cadence Lyman-α observations from the Large Yield Radiometer (LYRA) onboard the Project for On-Board Autonomy 2 (PROBA2) ESA spacecraft, we study the response of the lower part of the ionosphere, the D region, to seven moderate to medium-size solar flares that occurred in February and March of 2010. The ionospheric disturbances are analyzed by monitoring the resulting sub-ionospheric wave propagation anomalies detected by the South America Very Low Frequency (VLF) Network (SAVNET). We find that the ionospheric disturbances, which are characterized by changes of the VLF wave phase, do not depend on the presence of Lyman-α radiation excesses during the flares. Indeed, Lyman-α excesses associated with flares do not produce measurable phase changes. Our results are in agreement with what is expected in terms of forcing of the lower ionosphere by quiescent Lyman-α emission along the solar activity cycle. Therefore, while phase changes using the VLF technique may be a good indicator of quiescent Lyman-α variations along the solar cycle, they cannot be used to scale explosive Lyman-α emission during flares.
机译:使用软x射线探测器的测量在同步操作环境卫星(GOES)和同步从大型high-cadence莱曼-α观测收益率辐射计(莱拉)项目上车载自主2 (PROBA2) ESA的宇宙飞船,我们研究的下部的反应电离层D地区七个温和中型太阳耀斑发生2010年2月和3月。扰动进行了分析通过监控结果sub-ionospheric波传播异常检测的南美非常低频率(甚低频)网络(SAVNET)。的电离层扰动甚低频波相位的变化特征,不依赖于存在的莱曼-α在耀斑辐射过度。莱曼-α过度与耀斑不相关产生可衡量的相变。在协议的期望是什么迫使低电离层的静止莱曼-α发射太阳活动周期。因此,当使用甚低频相变技术可能是一个静止的良好指标莱曼-α沿着太阳周期变化,他们不能用于规模爆炸莱曼-α在耀斑发射。

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