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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Photoelectrons as a tool to evaluate spectral variations in solar EUV irradiance over solar cycle timescales
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Photoelectrons as a tool to evaluate spectral variations in solar EUV irradiance over solar cycle timescales

机译:光电子作为工具对光谱进行评估太阳能EUV在太阳辐照度的变化周期时间尺度

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There is limited information about the relative magnitude of the spectral variations in the ionizing component of solar irradiance on solar cycle timescales. We found that the Thermosphere, Ionosphere, Mesosphere, Energetics, and Dynamics (TIMED)/Solar Extreme Ultraviolet Experiment (SEE) Version 9 irradiance values predict relatively more ionospheric heating at solar minimum than those from Version 8. These changes have direct impacts on solar cycle timescale variations in ionospheric and thermospheric energy inputs derived from them. Photoelectron observations from the Fast Auroral Snapshot (FAST) satellite obtained from 2002 to 2008 are used with solar irradiance data, photoelectron flux models, and models of solar irradiance to examine the solar cycle variations of irradiance in the 4-27 nm range derived from the XPS sensor in the TIMED/SEE instrument suite. Good (±50%) agreement is found between daily photoelectron observations and model predictions. The largest differences between observed and modeled fluxes are in the 4-10 nm range, where the Fast Auroral Snapshot data show that the SEE Version 9 irradiances are systematically , low. Our analysis suggests that variation on solar cycle timescales in the TIMED/SEE Version 9 and Flare Irradiance Spectral Model irradiance derived from them are systematically low in the 18-27 nm region. Because of uncertainties in the absolute value of the observed photoelectron fluxes and solar irradiances, differences between observed and modeled photoelectron fluxes are not sufficient to determine more exactly the magnitude of variation on solar cycle timescales of solar irradiance in the 4-27 nm region. These suggestions can be confirmed by higher spectral resolution observations that will be madeon the Solar Dynamics Observatory mission.
机译:的信息相对有限光谱的变化电离太阳能辐照度的太阳能组件周期时间尺度。电离层、中间层、能量和动力(时间)/太阳能极端紫外实验(看到)版本9辐照度值预测相对更多的电离层加热太阳能最低比从Version 8。对太阳活动周期的时间尺度有直接的影响电离层的变化和thermospheric能量输入来自他们。从快速观察极光快照(快速)卫星获得从2002年到2008年使用太阳能辐照度数据,光电子太阳辐照度的通量模型和模型检查发光的太阳周期变化在速率nm范围内来自XPS传感器在定时/工具套件。之间的协议是发现日常光电子观察和预测模型。观察和模仿通量之间的区别在4到10纳米范围,极光快吗快照数据显示,看到版本9辐照度系统,低。分析表明,在太阳周期变化时间尺度在定时/看到Version 9和耀斑发光光谱辐照度来源于模型他们系统地低18-27海里地区。观察到的光电子通量和价值太阳辐照度,观察之间的区别和建模光电子通量足以确定更准确级太阳周期时间尺度的变化太阳辐照度的速率纳米区域。建议可以得到更高的光谱将madeon分辨率观测太阳动力学观测卫星的使命。

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