<p><strong>Figure 2.</strong> Mean charge (a) and radiative power loss (b) of W plasmas. Numbers in the plots correspond to the size of the atomic model (see the text).</p> <p><strong>Abstract</strong></p> <p>The fractional ion abundance and rates of ionization and recombination of multiple charged tungsten ions in magnetic fusion plasmas are investigated using a collisional radiative model. Using a computer algorithm to generate a set of atomic states to be included in the collisional radiative model, the dominant dielectronic recombination and excitation autoionization channels are determined by a systematic convergence analysis of the level population and ion abundance with respect to the size of the model. The atomic data, such as energ...
Theoretical studies of tungsten ions in plasmas are presented. New calculations of the radiative rec...
Atomic processes in plasmas are of the interest of magnetic and inertial fusion researches as well a...
We have constructed a collisional-radiative (CR) model for W27+ ions including 226 configurations wi...
<p><strong>Figure 3.</strong> Abundance of W ions for electron density of 10<sup>20</sup> m<sup>−3</...
<p><strong>Figure 1.</strong> Level diagram of the W<sup>44 +</sup> ion. The 50 lowest states, which...
<p><b>Table 3.</b> Dominant recombination channel of W<sup>43 +</sup> to W<sup>46 +</sup> ions at <e...
<p><b>Table 2.</b> Dominant ionization channel of W<sup>43 +</sup> to W<sup>46 +</sup> ions at <em>T...
<p><strong>Figure 6.</strong> Convergence of the ratio of abundance of W<sup>44 +</sup> to that of W...
<p><strong>Figure 10.</strong> Rate coefficients of ionization and recombination of W<sup>23 +</sup>...
<p><strong>Figure 5.</strong> Abundances of (a) W<sup>44 +</sup> and (b) W<sup>45 +</sup> as a funct...
<p><strong>Figure 9.</strong> Convergence of rate coefficients of (a) ionization and (b) recombinati...
<p><b>Table 1.</b> List of the first 50 excited states of W<sup>41 +</sup> to W<sup>46 +</sup> in th...
<p><strong>Figure 7.</strong> Convergence of abundance with respect to the difference in the abundan...
<p><strong>Figure 8.</strong> Temperature dependences of the rates of ((a)–(c)) ionization and ((d)–...
Dielectronic recombination (DR) is the dominant mode of recombination in magnetically confined fusio...
Theoretical studies of tungsten ions in plasmas are presented. New calculations of the radiative rec...
Atomic processes in plasmas are of the interest of magnetic and inertial fusion researches as well a...
We have constructed a collisional-radiative (CR) model for W27+ ions including 226 configurations wi...
<p><strong>Figure 3.</strong> Abundance of W ions for electron density of 10<sup>20</sup> m<sup>−3</...
<p><strong>Figure 1.</strong> Level diagram of the W<sup>44 +</sup> ion. The 50 lowest states, which...
<p><b>Table 3.</b> Dominant recombination channel of W<sup>43 +</sup> to W<sup>46 +</sup> ions at <e...
<p><b>Table 2.</b> Dominant ionization channel of W<sup>43 +</sup> to W<sup>46 +</sup> ions at <em>T...
<p><strong>Figure 6.</strong> Convergence of the ratio of abundance of W<sup>44 +</sup> to that of W...
<p><strong>Figure 10.</strong> Rate coefficients of ionization and recombination of W<sup>23 +</sup>...
<p><strong>Figure 5.</strong> Abundances of (a) W<sup>44 +</sup> and (b) W<sup>45 +</sup> as a funct...
<p><strong>Figure 9.</strong> Convergence of rate coefficients of (a) ionization and (b) recombinati...
<p><b>Table 1.</b> List of the first 50 excited states of W<sup>41 +</sup> to W<sup>46 +</sup> in th...
<p><strong>Figure 7.</strong> Convergence of abundance with respect to the difference in the abundan...
<p><strong>Figure 8.</strong> Temperature dependences of the rates of ((a)–(c)) ionization and ((d)–...
Dielectronic recombination (DR) is the dominant mode of recombination in magnetically confined fusio...
Theoretical studies of tungsten ions in plasmas are presented. New calculations of the radiative rec...
Atomic processes in plasmas are of the interest of magnetic and inertial fusion researches as well a...
We have constructed a collisional-radiative (CR) model for W27+ ions including 226 configurations wi...