At intermediate to high densities, electron (de-)excitation collisions are the dominant process for populating or depopulating high Rydberg states. In particular, the accurate knowledge of the energy changing (n-changing) collisional rates is determinant for predicting the radio recombination spectra of gaseous nebula. The different data sets present in the literature come either from impact parameter calculations or semi-empirical fits and the rate coefficients agree within a factor of 2. We show in this paper that these uncertainties cause errors lower than 5 per cent in the emission of radio recombination lines of most ionized plasmas of typical nebulae. However, in special circumstances where the transitions between Rydberg levels are a...
Hydrogen and helium emission lines in nebulae form by radiative recombination. This is a simple proc...
We critically analyze the Bell et al. findings on "anomalous" widths of high-order Hydrogen radio re...
We calculate the He I case B recombination cascade spectrum using improved radiative and collisional...
Detailed knowledge of the hydrogen population structure is necessary for the interpretation of hydro...
We present the results of several collisional-radiative models describing optically thin emissivitie...
This dissertation resolves a mystery in cosmic radio recombination line observations reported by Bel...
Precise spectral diagnostic modelling of H i and He ii recombination spectra can constrain theoretic...
Hydrogen and helium emission lines in nebulae form by radiative recombination. This is a simple proc...
Cosmological models can be constrained by determining primordial abundances. Accurate predictions of...
Determinations of the primordial helium abundance are used in precision cosmological tests. These re...
The atomic physics relevant to gaseous nebulae is critically examined using modelling software with...
We present results for the spectral distortions of the Cosmic Microwave Background (CMB) arising due...
Recombination lines arising in transitions between highly-excited atomic levels are becoming increas...
Accurate rates for energy-degenerate l-changing collisions are needed to determine cosmological abun...
<p><b>Table 4.</b> Atomic radiative and collisional data for high-<em>n</em> hydrogen transitions [<...
Hydrogen and helium emission lines in nebulae form by radiative recombination. This is a simple proc...
We critically analyze the Bell et al. findings on "anomalous" widths of high-order Hydrogen radio re...
We calculate the He I case B recombination cascade spectrum using improved radiative and collisional...
Detailed knowledge of the hydrogen population structure is necessary for the interpretation of hydro...
We present the results of several collisional-radiative models describing optically thin emissivitie...
This dissertation resolves a mystery in cosmic radio recombination line observations reported by Bel...
Precise spectral diagnostic modelling of H i and He ii recombination spectra can constrain theoretic...
Hydrogen and helium emission lines in nebulae form by radiative recombination. This is a simple proc...
Cosmological models can be constrained by determining primordial abundances. Accurate predictions of...
Determinations of the primordial helium abundance are used in precision cosmological tests. These re...
The atomic physics relevant to gaseous nebulae is critically examined using modelling software with...
We present results for the spectral distortions of the Cosmic Microwave Background (CMB) arising due...
Recombination lines arising in transitions between highly-excited atomic levels are becoming increas...
Accurate rates for energy-degenerate l-changing collisions are needed to determine cosmological abun...
<p><b>Table 4.</b> Atomic radiative and collisional data for high-<em>n</em> hydrogen transitions [<...
Hydrogen and helium emission lines in nebulae form by radiative recombination. This is a simple proc...
We critically analyze the Bell et al. findings on "anomalous" widths of high-order Hydrogen radio re...
We calculate the He I case B recombination cascade spectrum using improved radiative and collisional...