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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Evidence for a solar cycle influence on the infrared energy budget and radiative cooling of the thermosphere
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Evidence for a solar cycle influence on the infrared energy budget and radiative cooling of the thermosphere

机译:太阳周期对红外能量收支和热层辐射冷却的影响的证据

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We present direct observational evidence for solar cycle influence on the infrared energy budget and radiative cooling of the thermosphere. By analyzing nearly five years of data from the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument, we show that the annual mean infrared power radiated by the nitric oxide (NO) molecule at 5.3 μm has decreased by a factor of 2.9. This decrease is correlated (r = 0.96) with the decrease in the annual mean F10.7 solar index. Despite the sharp decrease in radiated power (which is equivalent to a decrease in the vertical integrated radiative cooling rate), the variability of the power as given in the standard deviation of the annual means remains approximately constant. A simple relationship is shown to exist between the infrared power radiated by NO and the F10.7 index, thus providing a fundamental relationship between solar activity and the thermospheric cooling rate for use in thermospheric models. The change in NO radiated power is also consistent with changes in absorbed ultraviolet radiation over the same time period. Computations of radiated power using an empirical model show much less variability than observed by SABER.
机译:我们提供了太阳周期对红外能量收支和热层辐射冷却影响的直接观察证据。通过使用宽带发射辐射法(SABER)仪器分析了来自大气探测的近五年数据,我们发现一氧化氮(NO)分子在5.3μm处辐射的年平均红外功率降低了2.9倍。该下降与年平均F10.7太阳指数的下降相关(r = 0.96)。尽管辐射功率急剧下降(这等效于垂直积分辐射冷却速率的下降),但以年均标准偏差表示的功率变化仍保持大致恒定。结果表明,NO辐射的红外功率与F10.7指数之间存在简单的关系,从而提供了太阳活动与热层模型中使用的热层冷却速率之间的基本关系。 NO辐射功率的变化也与同一时期吸收的紫外线辐射的变化一致。使用经验模型计算的辐射功率显示出的变异性比SABER观察到的要小得多。

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