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- W2090152156 abstract "Chandrasekhar's theory of radiative transfer is applied to the day airglow to obtain the D2 and D1 brightness as a function of the sodium abundance and ground albedo. An analytic method of integrating monochromatic intensities over a Doppler profile has been developed, eliminating the necessity for numerical quadratures. This method is general and could be used to simplify calculations in the twilight and night airglow sodium problems as well. A high ground albedo can nearly double the radiation incident on the sodium “layer”, compared with direct sunlight alone. A general derivation is given of Hunten's (Part III) approximation for an effective optical thickness. In Appendix A the twilight problem is treated from the standpoint of the analytic method of line integrations and equations are given that may be used to extend the accuracy of the solutions; in Appendix B some X- and Y-functions for small optical thicknesses are tabulated; Appendix C gives basic formulae for extending the accuracy of analytic solutions to transfer problems in line radiation." @default.
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- W2090152156 date "1958-12-01" @default.
- W2090152156 modified "2023-09-24" @default.
- W2090152156 title "Resonance scattering by atmospheric sodium—V Theory of the day airglow" @default.
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- W2090152156 doi "https://doi.org/10.1016/0021-9169(58)90028-x" @default.
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