ls#mo13.dat

Resolved Specific Ion Data Collections

Ion
Mo13+
Temperature Range
3.378 eV → 3.714 x 104 eV

ADF04

Filename
ls#mo13.dat
Full Path
adf04/copmm#42/ls#mo13.dat
Download data
  • Spontaneous Emission: Mo+13(i) → Mo+13(j) + hv
  • Electron Impact Excitation: Mo+13(i) + e → Mo+13(j) + e
606517 2S0.5 0.0 cm-1
606518 2P2.5 256830.0 cm-1
606519 2D4.5 652610.0 cm-1
60651a 2F6.5 1032500.0 cm-1
60651b 2S0.5 1088800.0 cm-1
60651c 2P2.5 1200100.0 cm-1
60651d 2D4.5 1373500.0 cm-1
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             Configuration
       Eissner            == Standard           R Parentage

   1   606517             == 3DA 4S1              1 2S  2S/
   2   606518             == 3DA 4P1              1 2P  2P/
   3   606519             == 3DA 4D1              1 2D  2D/
   4   60651A             == 3DA 4F1              1 2F  2F/
   5   60651B             == 3DA 5S1              1 2S  2S/
   6   60651C             == 3DA 5P1              1 2P  2P/
   7   60651D             == 3DA 5D1              1 2D  2D/

 (R) - Levels (or levels within a term) have been reassigned
       from their principal component.

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 IC Level list :

        1     2     3     4     5     6     7     8     9    10
       11    12

 Map to LS levels :

        1     2     2     3     3     4     4     5     6     6
        7     7

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   Generated from Cowan Atomic Structure Program

   From IFG file : ./ifg#mo42-13_adf34.dat

   Options in effect

   Coupling    Avalue   numtemps   Lweight   Isonuclear   Comment Level
   LS          YES      14         NO        YES          2


   Cowan code options
   ------------------
                                                                          
      Cowan plane wave Born method                                        
                                                                          
      Scale factors 85 95 85 85 50                                        
                                                                          
   Parity 1    Parity 2    Allowed
         15          13         26     initially
          6           3         10     reduced

   Note: The Born method does NOT calculate spin changing transitions
   correctly. You should supplement for important transitions of this type.

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   Code     : ADAS801
   Producer : Martin O'Mullane
   Date     : 28/02/04

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Contributors

  • Martin O'Mullane
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