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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Soft X-ray irradiances during solar flares observed by TIMED-SEE
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Soft X-ray irradiances during solar flares observed by TIMED-SEE

机译:太阳耀斑期间软x射线辐照度观察到TIMED-SEE

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Observations from the Thermosphere Ionosphere Mesosphere Energetics Dynamics–Solar Extreme Ultraviolet Experiment (TIMED-SEE) are analyzed to determine the solar soft X-ray energy emission during a solar flare. The TIMED-SEE X-ray ultraviolet Photometer System (XPS) detectors utilize broadband photodiodes that observe from 0.1 to 27 nm. The XPS observed 29 flares of various strengths over a 6-month period in 2002. We describe an emission measure technique to interpret the broadband observations and determine a best fit flare spectrum. This technique is applied to the 29 flares observed by the XPS. Our results show that most of the enhancement in the solar spectrum during a flare comes from the 0–2 nm wavelength range. We also show that the XPS calculated 0.1–0.8 nm irradiance for brighter M-class and X-class flares is in good agreement with the Geostationary Operational Environmental Satellites (GOES) observed 0.1–0.8 nm irradiance. Also, the XPS 0–7 nm flare irradiance is well correlated with the 0.1–0.8 nm irradiance observed by GOES. We show that the total 0–7 nm irradiance of smaller X-class flares (X1–X5) calculated at the time of the XPS observation provides 2–3 times the energy of the quiet Sun 0–7 nm irradiance.
机译:从热大气层电离层观测中间层能量Dynamics-Solar极端紫外实验(TIMED-SEE)进行了分析确定太阳能软x射线能量发射在太阳耀斑。紫外光度计系统(XPS)探测器利用宽带光敏二极管,观察0.1 - 27 nm。各种优势2002年6个月时间。我们描述一个发射测量技术宽带的观察和解释确定最适合耀斑频谱。技术是应用于29日耀斑观察到XPS。增强在太阳光谱耀斑来自于0 - 2纳米波长范围。计算表明,XPS 0.1 - -0.8海里发光亮度达到x6.9级和x级耀斑是在良好的协议地球同步运行环境(会)和卫星观测0.1 - -0.8 nm辐照度。此外,XPS鹿nm耀斑辐照度是好与0.1 - -0.8 nm辐照度观察到。辐照度较小的x级耀斑(X1-X5)计算时的XPS观察平静的太阳的能量提供了2 - 3倍鹿纳米发光。

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