coppm#li_pm#zn27j.dat

Resolved Specific Ion Data Collections

Ion
Zn27+
Temperature Range
33.78 eV → 6.755 x 104 eV

ADF04

Filename
coppm#li_pm#zn27j.dat
Full Path
adf04/coppm#li/coppm#li_pm#zn27j.dat
Download data
  • Spontaneous Emission: Zn+27(i) → Zn+27(j) + hv
  • Electron Impact Excitation: Zn+27(i) + e → Zn+27(j) + e
2s1 2S0.5 0.0 cm-1
2p1 2P0.5 462745.0 cm-1
2p1 2P1.5 701830.0 cm-1
3s1 2S0.5 12605300.0 cm-1
3p1 2P0.5 12734100.0 cm-1
3p1 2P1.5 12806900.0 cm-1
3d1 2D1.5 12856900.0 cm-1
3d1 2D2.5 12879300.0 cm-1
4s1 2S0.5 16951200.0 cm-1
4p1 2P0.5 17004300.0 cm-1
4p1 2P1.5 17035000.0 cm-1
4d1 2D1.5 17055900.0 cm-1
4d1 2D2.5 17065300.0 cm-1
4f1 2F2.5 17067200.0 cm-1
4f1 2F3.5 17071800.0 cm-1
5s1 2S0.5 18946200.0 cm-1
5p1 2P0.5 18973100.0 cm-1
5p1 2P1.5 18988800.0 cm-1
5d1 2D1.5 18999400.0 cm-1
5d1 2D2.5 19004300.0 cm-1
5f1 2F2.5 19005200.0 cm-1
5f1 2F3.5 19007700.0 cm-1
5g1 2G3.5 19008100.0 cm-1
5g1 2G4.5 19009500.0 cm-1
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 The data in this file are based on that of Zhang et al.(1990) with the following
 modifications to correct them for the effect of resonances and to increase or
 decrease their values to bring them into line with the close-coupling data as
 reviewed by McWhirter (ADNDT 1994). The parameters used for these modifications
 are listed below (see McW's review for an explanation of the symbols):
  
  1. Enhancement due to resonances following Bhadra and Henry (1982). Values of
 alpha:
 2s-3s    2.0
 2s-3p    2.4
 2p-3s   11.4
 2p-3p    3.8
  
 2. Correction factors by which Zhang et al's values have been divided to bring
 them closer to the close-coupling results:
 2s-3s    1.0
 2s-3p    0.94
 2s-3d    1.0
 2p-3s    0.99
 2p-3p    1.16
 2p-3d    1.17
  
 The value of the ionization potential has been taken from Kelly's wavelength
 tables (J Phys Chem  Ref Data vol 16 Supp 1 1987)
  
 Where Zhang et al. have not provided data the table has been extended using
 the impact parameter approximation.
  
 Make comments conform to adf04 specification.
 Martin O'Mullane, 04-11-2010
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Dependents

Contributors

  • Hong Zhang
  • Peter McWhirter
  • Martin O'Mullane
  • Processes
  • States
  • Comments
  • Origins

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