8,858 research outputs found

    An assessment of twilight airglow inversion procedures using atmosphere explorer observations

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    The aim of this research project was to test and truth some recently developed methods for recovering thermospheric oxygen atom densities and thermospheric temperatures from ground-based observations of the 7320 A O(+)((sup 2)D - (sup 2)P) twilight air glow emission. The research plan was to use twilight observations made by the Visible Airglow Experiment (VAE) on the Atmosphere Explorer 'E' satellite as proxy ground based twilight observations. These observations were to be processed using the twilight inversion procedures, and the recovered oxygen atom densities and thermospheric temperatures were then to be examined to see how they compared with the densities and temperatures that were measured by the Open Source Mass Spectrometer and the Neutral Atmosphere Temperature Experiment on the satellite

    Differential excitation cross section measurement of O(¹D) at 20 eV electron impact

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    Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94801/1/grl2868.pd

    Atomic emission in the ultraviolet nightglow

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    Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95222/1/grl4575.pd

    Apollo applications program data archives

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    Apollo applications program data archives to collect, store, retrieve, and distribute experiments-related dat

    A discrete time-dependent method for metastable atoms in intense fields

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    The full-dimensional time-dependent Schrodinger equation for the electronic dynamics of single-electron systems in intense external fields is solved directly using a discrete method. Our approach combines the finite-difference and Lagrange mesh methods. The method is applied to calculate the quasienergies and ionization probabilities of atomic and molecular systems in intense static and dynamic electric fields. The gauge invariance and accuracy of the method is established. Applications to multiphoton ionization of positronium and hydrogen atoms and molecules are presented. At very high intensity above saturation threshold, we extend the method using a scaling technique to estimate the quasienergies of metastable states of the hydrogen molecular ion. The results are in good agreement with recent experiments.Comment: 10 pages, 9 figure, 4 table
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