ssh41_cs_ic#xe53.dat

Resolved Specific Ion Data Collections

Ion
Xe53+
Temperature Range
25.16 eV → 5.024 x 105 eV

ADF04

Filename
ssh41_cs_ic#xe53.dat
Full Path
adf04/copssh#54/ssh41_cs_ic#xe53.dat
Download data
  • Spontaneous Emission: Xe+53(i) → Xe+53(j) + hv
  • Electron Impact Excitation: Xe+53(i) + e → Xe+53(j) + e
1s1 2S0.5 0.0 cm-1
2s1 2S0.5 248730000.0 cm-1
2p1 2P0.5 248858000.0 cm-1
2p1 2P1.5 252061000.0 cm-1
3s1 2S0.5 295853000.0 cm-1
3p1 2P0.5 295885000.0 cm-1
3p1 2P1.5 296841000.0 cm-1
3d1 2D1.5 296865000.0 cm-1
3d1 2D2.5 297154000.0 cm-1
4s1 2S0.5 312207000.0 cm-1
4p1 2P0.5 312220000.0 cm-1
4p1 2P1.5 312622000.0 cm-1
4d1 2D1.5 312633000.0 cm-1
4d1 2D2.5 312755000.0 cm-1
5s1 2S0.5 319718000.0 cm-1
5p1 2P0.5 319724000.0 cm-1
5p1 2P1.5 319930000.0 cm-1
5d1 2D1.5 319935000.0 cm-1
5d1 2D2.5 319998000.0 cm-1
-------------------------------------------------------------------------------
 comments from original adf04 file
-------------------------------------------------------------------------------

              Configuration
        Eissner            == Standard           R  %   Parentage

    1   511                ==  1S1                 100  1 2S  2S/
    2   512                ==  2S1                 100  1 2S  2S/
    3   513                ==  2P1                 100  1 2P  2P/
    4   513                ==  2P1                 100  1 2P  2P/
    5   514                ==  3S1                 100  1 2S  2S/
    6   515                ==  3P1                 100  1 2P  2P/
    7   515                ==  3P1                 100  1 2P  2P/
    8   516                ==  3D1                 100  1 2D  2D/
    9   516                ==  3D1                 100  1 2D  2D/
   10   517                ==  4S1                 100  1 2S  2S/
   11   518                ==  4P1                 100  1 2P  2P/
   12   518                ==  4P1                 100  1 2P  2P/
   13   519                ==  4D1                 100  1 2D  2D/
   14   519                ==  4D1                 100  1 2D  2D/
   15   51B                ==  5S1                 100  1 2S  2S/
   16   51C                ==  5P1                 100  1 2P  2P/
   17   51C                ==  5P1                 100  1 2P  2P/
   18   51D                ==  5D1                 100  1 2D  2D/
   19   51D                ==  5D1                 100  1 2D  2D/

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

 (excl) - Levels included in structure but no A-value or
          collision strength calculated.

-------------------------------------------------------------------------------

   Generated from Cowan Atomic Structure Program

   From IFG file : ./ifg#xe53_ca.dat

   Options in effect

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


   Cowan code options
   ------------------

      Cowan plane wave Born method

      Scale factors 80 90 80 80 80

   Parity 1    Parity 2    Allowed
         55          28         76     initially
         55          28         76     reduced

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

-------------------------------------------------------------------------------

   ***** Type 1 adf04 file *****

   Temperatures replaced by X=(impact energy)/Delta E.
   Effective collision strengths replaced by collision strengths.

-------------------------------------------------------------------------------

   Code     : ADAS801
   Producer : Stuart Henderson
   Date     : 21/08/17

-------------------------------------------------------------------------------
-------------------------------------------------------------------------------

  Conversion of an adf04 dataset from type 1 to type 3

  Parameter: Cowan ion threshold shift = F


  Producer : Stuart Henderson
  Date     : 21-08-2017

-------------------------------------------------------------------------------

  Separate iz1 from ionisation potential.

  Martin O'Mullane
  18-08-2019
 
-------------------------------------------------------------------------------

Contributors

  • Stuart Henderson
  • Processes
  • States
  • Comments
  • Origins

Data Classes