silike_pjs10#fe12.dat

Resolved Specific Ion Data Collections

Ion
Fe12+
Temperature Range
8.617 eV → 8617 eV

ADF04

Filename
silike_pjs10#fe12.dat
Full Path
adf04/silike/silike_pjs10#fe12.dat
Download data
  • Spontaneous Emission: Fe+12(i) → Fe+12(j) + hv
  • Electron Impact Excitation: Fe+12(i) + e → Fe+12(j) + e
3s2 3p2 3P0.0 0.0 cm-1
3s2 3p2 3P1.0 8872.0 cm-1
3s2 3p2 3P2.0 18183.0 cm-1
3s2 3p2 1D2.0 49557.0 cm-1
3s2 3p2 1S0.0 93410.0 cm-1
3s1 3p3 5S2.0 210079.0 cm-1
3s1 3p3 3D1.0 286406.0 cm-1
3s1 3p3 3D2.0 286531.0 cm-1
3s1 3p3 3D3.0 289298.0 cm-1
3s1 3p3 3P0.0 328862.0 cm-1
3s1 3p3 3P1.0 329552.0 cm-1
3s1 3p3 3P2.0 330100.0 cm-1
3s1 3p3 1D2.0 364245.0 cm-1
3s1 3p3 3S1.0 420590.0 cm-1
3s2 3p1 3d1 3F2.0 435911.0 cm-1
3s1 3p3 1P1.0 443906.0 cm-1
3s2 3p1 3d1 3F3.0 442658.0 cm-1
3s2 3p1 3d1 3F4.0 452498.0 cm-1
3s2 3p1 3d1 3P2.0 494419.0 cm-1
3s2 3p1 3d1 3P1.0 502535.0 cm-1
3s2 3p1 3d1 1D2.0 506609.0 cm-1
3s2 3p1 3d1 3P0.0 508030.0 cm-1
3s2 3p1 3d1 3D1.0 514400.0 cm-1
3s2 3p1 3d1 3D3.0 518072.0 cm-1
3s2 3p1 3d1 3D2.0 517547.0 cm-1
3s2 3p1 3d1 1F3.0 568330.0 cm-1
3s2 3p1 3d1 1P1.0 581783.0 cm-1
3p4 3P2.0 602414.0 cm-1
3p4 3P1.0 614762.0 cm-1
3p4 3P0.0 617690.0 cm-1
3p4 1D2.0 626515.0 cm-1
3s1 3p2 3d1 5F1.0 634374.0 cm-1
3s1 3p2 3d1 5F2.0 636613.0 cm-1
3s1 3p2 3d1 5F3.0 640139.0 cm-1
3s1 3p2 3d1 5F4.0 645121.0 cm-1
3s1 3p2 3d1 5F5.0 651574.0 cm-1
3s1 3p2 3d1 5D0.0 656933.0 cm-1
3s1 3p2 3d1 5D1.0 657595.0 cm-1
3s1 3p2 3d1 5D2.0 658817.0 cm-1
3s1 3p2 3d1 5D3.0 660646.0 cm-1
3s1 3p2 3d1 5D4.0 663481.0 cm-1
3s1 3p2 3d1 3F2.0 682549.0 cm-1
3s1 3p2 3d1 3F3.0 686940.0 cm-1
3s1 3p2 3d1 3F4.0 693522.0 cm-1
3s1 3p2 3d1 5P3.0 705669.0 cm-1
3p4 1S0.0 706245.0 cm-1
3s1 3p2 3d1 5P2.0 708868.0 cm-1
3s1 3p2 3d1 5P1.0 710758.0 cm-1
3s1 3p2 3d1 3P2.0 724070.0 cm-1
3s1 3p2 3d1 3P1.0 732962.0 cm-1
3s1 3p2 3d1 3P0.0 738880.0 cm-1
3s1 3p2 3d1 3G3.0 759622.0 cm-1
3s1 3p2 3d1 3G4.0 761439.0 cm-1
3s1 3p2 3d1 3G5.0 763602.0 cm-1
3s1 3p2 3d1 3D1.0 766294.0 cm-1
3s1 3p2 3d1 3D2.0 766964.0 cm-1
3s1 3p2 3d1 3D3.0 768138.0 cm-1
3s1 3p2 3d1 1G4.0 776546.0 cm-1
3s1 3p2 3d1 1F3.0 780881.0 cm-1
3s1 3p2 3d1 3F2.0 791958.0 cm-1
3s1 3p2 3d1 3F3.0 797538.0 cm-1
3s1 3p2 3d1 3D1.0 800639.0 cm-1
3s1 3p2 3d1 3D2.0 803413.0 cm-1
3s1 3p2 3d1 3F4.0 806081.0 cm-1
3s1 3p2 3d1 1P1.0 806398.0 cm-1
3s1 3p2 3d1 3P0.0 809164.0 cm-1
3s1 3p2 3d1 3D3.0 809176.0 cm-1
3s1 3p2 3d1 3P1.0 811301.0 cm-1
3s1 3p2 3d1 3P2.0 814977.0 cm-1
3s1 3p2 3d1 3S1.0 826777.0 cm-1
3s1 3p2 3d1 3D1.0 830149.0 cm-1
3s1 3p2 3d1 3D2.0 832006.0 cm-1
3s1 3p2 3d1 3D3.0 839106.0 cm-1
3s1 3p2 3d1 3F2.0 841853.0 cm-1
3s1 3p2 3d1 3F3.0 846395.0 cm-1
3s1 3p2 3d1 3F4.0 848911.0 cm-1
3s1 3p2 3d1 1D2.0 850605.0 cm-1
3s1 3p2 3d1 3D3.0 877471.0 cm-1
3s1 3p2 3d1 3D2.0 880940.0 cm-1
3s1 3p2 3d1 1D2.0 883093.0 cm-1
3s1 3p2 3d1 3D1.0 883824.0 cm-1
3s1 3p2 3d1 1S0.0 889255.0 cm-1
3s1 3p2 3d1 1P1.0 906634.0 cm-1
3s1 3p2 3d1 3P2.0 911551.0 cm-1
3s1 3p2 3d1 3P0.0 918942.0 cm-1
3s1 3p2 3d1 3P1.0 919254.0 cm-1
3s1 3p2 3d1 1F3.0 945150.0 cm-1
3s2 3d2 3F2.0 970621.0 cm-1
3s2 3d2 3F3.0 972909.0 cm-1
3s2 3d2 3F4.0 974399.0 cm-1
3s1 3p2 3d1 1D2.0 977765.0 cm-1
3p3 3d1 1S0.0 992069.0 cm-1
3p3 3d1 3F2.0 998998.0 cm-1
3p3 3d1 3F3.0 1002310.0 cm-1
3s2 3d2 3P0.0 1003830.0 cm-1
3s2 3d2 3P1.0 1004710.0 cm-1
3s2 3d2 3P2.0 1006020.0 cm-1
3p3 3d1 3F4.0 1007440.0 cm-1
3s2 3d2 1G4.0 1007550.0 cm-1
3p3 3d1 3D2.0 1008890.0 cm-1
3p3 3d1 3D3.0 1009810.0 cm-1
3p3 3d1 3D1.0 1009930.0 cm-1
3s2 3d2 1D2.0 1011770.0 cm-1
3p3 3d1 5D0.0 1011960.0 cm-1
3p3 3d1 5D1.0 1012270.0 cm-1
3p3 3d1 5D2.0 1013300.0 cm-1
3p3 3d1 5D3.0 1015240.0 cm-1
3p3 3d1 5D4.0 1016260.0 cm-1
3p3 3d1 3G3.0 1034450.0 cm-1
3p3 3d1 3G4.0 1036560.0 cm-1
3p3 3d1 3G5.0 1039180.0 cm-1
3p3 3d1 1D2.0 1058060.0 cm-1
3p3 3d1 1G4.0 1070110.0 cm-1
3s2 3d2 1S0.0 1081520.0 cm-1
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 Effective collision strengths calculated by  P.J.Storey
 (Storey and Zeippen 2010, A&A, 511, A78, 2010)

 DOI: 10.1051/0004-6361/200912689
 
 High-energy limits calculated by GDZ with AUTOSTRUCTURE
 and the same scattering target as in Storey and Zeippen (2010).
 
 The A-values for a number of important  transitions from the lowest 27 levels
 are from table 8 of Storey and Zeippen (2010). They were obtained
 with SUPERSTRUCTURE, a large benchmark calculation, 
 term-energy-corrections and observed energies.
 
 
 The remaining A-values were calculated with AUTOSTRUCTURE,
 the same scattering target as in Storey and Zeippen (2010),
 and the observed energies as in  Del Zanna G., 2011, A&A.

 DOI: 10.1051/0004-6361/201117121
 
 The observed energies as in  Del Zanna G., 2011, A&A are
 [corresponding index and energy in cm-1]:
 
        1          0.0
        2       9303.1000
        3       18561.700
        4       48069.700
        5       91511.000
        6       214624.00
        7       287205.00
        8       287356.00
        9       290180.00
       10       328927.00
       11       329637.00
       12       330282.00
       13       362407.00
       14       415462.00
       15       430124.00
       16       438086.00
       17       436919.00
       18       447001.00
       19       486358.00
       20       494942.00
       21       498870.00
       22       501514.00
       23       506505.00
       24       509176.00
       25       509250.00
       26       556911.00
       27       570743.00
       28       591362.00
       42       669564.00
       56       753767.00
       60       777950.00
       61       783540.00
       64       792105.00
       72       817170.00
       84       897511.00
 
 
  NAME: Giulio Del Zanna (GDZ) 
  DATE: Wed May  4 12:06:00 2011
 
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