We present electron collision strengths and their thermally averaged values for the nebular forbidden lines of the astronomically abundant doubly ionized oxygen ion, O2+, in an intermediate coupling scheme using the Breit–Pauli relativistic terms as implemented in an R-matrix atomic scattering code. We use several atomic targets for the R-matrix scattering calculations including one with 72 atomic terms. We also compare with new results obtained using the intermediate coupling frame transformation method. We find spectroscopically significant differences against a recent Breit–Pauli calculation for the excitation of the [O iii] λ4363 transition but confirm the results of earlier calculations
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
<p>We present electron collision strengths and their thermally averaged values for the nebular forbi...
We present electron collision strengths and their thermally averaged values for the forbidden lines ...
We present electron collision strengths and their thermally averaged values for the nebular forbidde...
We present electron collision strengths and their thermally averaged values for the nebular forbidde...
<p>The list presents electron collision strengths as a function of the electron excitation energy fo...
<p>We present effective collision strengths for electron excitation and de-excitation of the ten for...
The list presents electron collision strengths for the forbidden transitions between the fifteen low...
Effective collision strengths for forbidden transitions among the five energetically lowest fine-str...
The list presents electron collision strengths for the forbidden transitions between the fifteen low...
We present a new large-scale R-matrix scattering calculation for electron collisional excitation of ...
Aims. Oscillator strengths and electron impact excitation collision strengths for transitions betwee...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
<p>We present electron collision strengths and their thermally averaged values for the nebular forbi...
We present electron collision strengths and their thermally averaged values for the forbidden lines ...
We present electron collision strengths and their thermally averaged values for the nebular forbidde...
We present electron collision strengths and their thermally averaged values for the nebular forbidde...
<p>The list presents electron collision strengths as a function of the electron excitation energy fo...
<p>We present effective collision strengths for electron excitation and de-excitation of the ten for...
The list presents electron collision strengths for the forbidden transitions between the fifteen low...
Effective collision strengths for forbidden transitions among the five energetically lowest fine-str...
The list presents electron collision strengths for the forbidden transitions between the fifteen low...
We present a new large-scale R-matrix scattering calculation for electron collisional excitation of ...
Aims. Oscillator strengths and electron impact excitation collision strengths for transitions betwee...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...
Aims. This work reports on radiative transition rates and electron impact excitation collision stren...