In this paper we present the results of a study of the effect of vibrationally excited oxygen, O*2, and nitrogen, N*2, on the electron density, Ne, and the electron temperature, Te, in the D and E regions. The sources of O*2 are O-atom recombination, the photodissociation of O3, and the reaction of O3 with O at D region altitudes. The first calculations of O*2( j) number densities, Nj, are obtained by solving continuity equations for the models of harmonic and anharmonic oscillator energy levels, j=1-22. It is found that day time values of Nj are less than nighttime values. We also show that the photoionization of O*2 ( j ≥ 11) by Lα-radiation has no influence on the D region Ne. In the nighttime D region the photoioniza...
The densities and vibrational distributions of N2+ in the X²Σg+, A²Πu, and B²Σu+ states in the dayti...
The vibrational distributions of O2+ in the X2Πg, A2Πu, a4Πu, and b4Σ-g states in the dayside terres...
For the purposes of this thesis, the lower ionosphere is defined as the ionized region beneath the E...
In this paper we present the results of a study of the effect of vibrationally excited oxygen, O<...
We present a comparison of the observed behavior of the F region ionosphere over Millstone Hill dur...
The first five vibrationally excited states of molecular nitrogen have been included in the Sheffie...
Abstract. The first five vibrationally excited states of molecular nitrogen have been included in th...
Relative vibrational populations of triplet B3Πg, W3Δ,sub>u, B'3Σu− states of ...
Millstone Hill ionospheric storm time measurements of the electron density and temperature during t...
This paper presents the results of a re-examination of three major areas of D-region aeronomy, namel...
We present a comparison of the observed behavior of the F-region ionosphere over Millstone Hill dur...
Calculations will be presented of the vibrational distribution of O2+ in the terrestrial thermospher...
The influence of atomic oxygen concentration on the height distribution of the main positive and ne...
A fully time-dependent mathematical model, SUPIM, of the Earth's plasmasphere is used in this inves...
The calculation of the electron density and electron temperature distribution in our ionosphere (fro...
The densities and vibrational distributions of N2+ in the X²Σg+, A²Πu, and B²Σu+ states in the dayti...
The vibrational distributions of O2+ in the X2Πg, A2Πu, a4Πu, and b4Σ-g states in the dayside terres...
For the purposes of this thesis, the lower ionosphere is defined as the ionized region beneath the E...
In this paper we present the results of a study of the effect of vibrationally excited oxygen, O<...
We present a comparison of the observed behavior of the F region ionosphere over Millstone Hill dur...
The first five vibrationally excited states of molecular nitrogen have been included in the Sheffie...
Abstract. The first five vibrationally excited states of molecular nitrogen have been included in th...
Relative vibrational populations of triplet B3Πg, W3Δ,sub>u, B'3Σu− states of ...
Millstone Hill ionospheric storm time measurements of the electron density and temperature during t...
This paper presents the results of a re-examination of three major areas of D-region aeronomy, namel...
We present a comparison of the observed behavior of the F-region ionosphere over Millstone Hill dur...
Calculations will be presented of the vibrational distribution of O2+ in the terrestrial thermospher...
The influence of atomic oxygen concentration on the height distribution of the main positive and ne...
A fully time-dependent mathematical model, SUPIM, of the Earth's plasmasphere is used in this inves...
The calculation of the electron density and electron temperature distribution in our ionosphere (fro...
The densities and vibrational distributions of N2+ in the X²Σg+, A²Πu, and B²Σu+ states in the dayti...
The vibrational distributions of O2+ in the X2Πg, A2Πu, a4Πu, and b4Σ-g states in the dayside terres...
For the purposes of this thesis, the lower ionosphere is defined as the ionized region beneath the E...