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Signatures of Thermospheric-Exospheric Coupling of Hydrogen in Observed Seasonal Trends of H α Intensity

机译:签名Thermospheric-Exospheric耦合的Hα氢观测到的季节性趋势强度

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摘要

Analysis of an established geocoronal H α data set indicates a seasonal trend in observed dusk-to-dawn intensity variation, consistent with a diurnal variation in the underlying thermospheric hydrogen density. Observations were obtained at Pine Bluff Observatory, WI, from 2000 to 2001 using a high spectral resolution (R ~80,000) Fabry-Perot annular summing spectrometer. This dusk-to-dawn asymmetry in intensity is highest in winter months with a difference of ~2.7 Rayleighs and smallest in summer months with a difference of ~0.5 Rayleighs;observations near equinox show a dusk-to-dawn difference in intensity close to ~1.3 Rayleighs. Comparisons between modeled and observed dusk-to-dawn intensity variation show good agreement near the equinoxes. The modeled intensity was generated using the lyao_rt radiative transport code of Bishop (1999, https://doi.org/10.1016/S0022-4073(98)00031-4),employing NRLMSISE-00 thermospheric hydrogen profiles extended into the exosphere via the evaporative case of the Bishop analytic exosphere. Near the equinoxes and summer solstice, the model tends to agree with observations. Near the winter solstice, the model underestimates the dusk-to-dawn asymmetry by 1.5-2 Rayleighs. Overall, modeled H α intensity generated with NRLMSISE-00 as the thermospheric input is shown to be consistently lower than observed intensity by a factor of ~2.
机译:分析一个既定geocoronal Hα数据集表示一种季节性的趋势全天候的强度变化,符合底层的昼夜变化thermospheric氢密度。派恩布拉夫天文台,WI,从2000年使用高光谱分辨率(R - 2001~ 80000)法布里-珀罗环形求和谱仪。强度是最高的在冬季~ 2.7瑞利和最小的差异夏季的区别~ 0.5瑞利;观察equinox附近显示全天候的不同强度接近~ 1.3瑞利。观察到的全天候的强度变化在春分和秋分好协议。使用lyao_rt生成强度辐射传输代码的主教(1999

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