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Solar radiation-induced changes in ionospheric height and the Schumann resonance waveguide on different timescales

机译:太阳辐射引起的电离层高度变化和舒曼共振波导在不同时标上的变化

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摘要

This study draws together the available observations in the Schumann resonance frequency range to examine the general issue of sensitivity of ionospheric height variations to changes in ionizing radiation from the Sun on different timescales. Ionospheric height can be formally defined, and two characteristic heights are recognized in the Schumann resonance frequency range. In general, order of magnitude changes in radiation are needed to cause relative changes in ionospheric height as large as 10%, as is the case on both the diurnal and 11-year timescales. Changes in EUV radiation are probably insufficiently strong to account for either the 27-day or the 11-year variation in ionospheric height. More ionization-effective X radiation is needed, but much smaller height changes are expected on the solar rotation timescale because the variations in X radiation on this timescale are only tens of percent and not orders of magnitude. The annual variation in radiation from the Sun is only 7%, with an expected height variation less than 100 m, and this remains to be verified by observations. The general insensitivity of the Schumann resonance cavity to changes in ionizing radiation lends stability to the medium that is valuable toward quantifying absolute changes in the global lightning activity on various timescales within the cavity.
机译:这项研究汇总了舒曼共振频率范围内的可用观测值,以检验电离层高度变化对不同时间尺度上来自太阳的电离辐射变化的敏感性的一般性问题。可以正式定义电离层高度,并在舒曼共振频率范围内识别出两个特征高度。通常,辐射的数量级变化需要引起电离层高度的相对变化,如昼夜和11年时标一样,变化高达10%。 EUV辐射的变化可能不足以说明电离层高度的27天或11年变化。需要更多的电离有效的X辐射,但是在太阳旋转时标上可以预期到更小的高度变化,因为X辐射在该时间标上的变化仅为百分之几而不是数量级。太阳辐射的年变化仅为7%,预期的高度变化小于100 m,这仍有待观察证实。舒曼共振腔对电离辐射变化的总体不敏感性为介质提供了稳定性,这对于量化腔内各个时间尺度上全球闪电活动的绝对变化具有重要意义。

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