Electron-impact excitation of Sc II: collision strengths and effective collision strengths for fine-structure transitions
نویسندگان
چکیده
Accurate fine-structure atomic data for the Fe-peak elements are essential for interpreting astronomical spectra. There is a severe paucity of data available for Sc II, highlighted by the fact that no collision strengths are readily available for this ion. We present electron-impact excitation collision strengths and Maxwellian averaged effective collision strengths for Sc II. The collision strengths were calculated for all 3916 transitions amongst 89 jj levels (arising from the 3d4s, 3d, 4s, 3d4p, 4s4p, 3d5s, 3d4d, 3d5p, 4p and 3d4f configurations), resulting in a 944 coupled channel problem. The R-matrix package RMATRXII was utilized, along with the transformation code FINE and the external region code PSTGF, to calculate the collision strengths for a range of incident electron energies in the 0 to 8.3 Rydberg region. Maxwellian averaged effective collision strengths were then produced for 27 temperatures lying within the astrophysically significant range of 30 to 105 K. The collision strengths and effective collision strengths were produced for two different target models. The purpose was to systematically examine the effect of including open 3p correlation terms into the configuration interaction expansion for the wavefunction. The first model consisted of all 36 CI terms that could be generated with the 3p core closed. The second model incorporated an additional six configurations which allowed for single-electron excitations from within the 3p core. Comparisons are made between the two models and the results of Bautista et al., obtained by private communication. It is concluded that the first model produced the most reliable set of collision and effective collision strengths for use in astrophysical and plasma applications.
منابع مشابه
Electron impact excitation of O II fine - structure levels ⋆
Effective collision strengths for forbidden transitions among the 5 energetically lowest finestructure levels of O II are calculated in the Breit-Pauli approximation using the R-matrix method. Results are presented for the electron temperature range 100 – 100000 K. The accuracy of the calculations is evaluated via the use of different types of radial orbital sets and a different configuration e...
متن کاملug 2 00 2 Breit - Pauli R - matrix calculations for electron impact excitation of Fe XVII : a benchmark study
A comprehensive study of relativistic and resonance effects in electron impact excitation of (e+Fe XVII) is carried out using the Breit-Pauli R-matrix (BPRM) method in the relativistic close coupling (CC) approximation. Two sets of eigenfunction expansions are employed; first, up to the n = 3 complex corresponding 37 fine-structure levels (37CC) from 21 LS terms; second, up to the n= 4 correspo...
متن کاملAtomic data from the Iron Project . LXIV . Radiative transition rates and collision strengths for Ca ii ⋆
Aims. This work reports radiative transition rates and electron impact excitation rate coefficients for levels of the n= 3, 4, 5, 6, 7, 8 configurations of Ca ii. Methods. The radiative data were computed using the Thomas-Fermi-Dirac central potential method in the frozen core approximation and includes the polarization interaction between the valence electron and the core using a model potenti...
متن کاملElectron Impact Excitation of Helium-like Oxygen up to n=4 levels including radiation damping
The primary X-ray diagnostic lines in He-like ions are mainly excited by electron impact from the ground level to the n = 2 levels, but at high temperatures n > 2 levels are also excited. In order to describe the atomic processes more completely collision strengths are computed for O VII including for the first time all of the following: (i) relativistic fine structure, (ii) levels up to the n ...
متن کاملAtomic Processes in Planetary Nebulae
Abstract. A hot central star illuminating the surrounding ionized H II region usually produces very rich atomic spectra resulting from basic atomic processes: photoionization, electron-ion recombination, boundbound radiative transitions, and collisional excitation of ions. Precise diagnostics of nebular spectra depend on accurate atomic parameters for these processes. Latest developments in the...
متن کامل