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Table 3 Transition probabilities for the transitions 1s2 np–1s2 4s calculated in this work compared with other results

From: Rydberg energies and transition probabilities of Li I for npms (m ≤ 5) transitions

Configuration

Energy

Transition probabilities

Upper level

Lower level

Energy cm−1

This work

Other results

1s2 4p

1s2 4s

36,469.55

7.38E+05

7.74E+05a,7.76E+05b, 8.04E+05c,7.85E+05d,7.73E+05e, 7.52E+05f, 7.7E+05g

1s2 5p

1s2 4s

39,015.56

2.68E+03

3.59E+03a, 3.39E+03b,4.51E+03e, 1.9E+03g

1s2 6p

1s2 4s

40,390.84

2.21E+03

1.62E+03a,1.87E+03b, 1.17E+03e

1s2 7p

1s2 4s

41,217.05

4.53E+03

3.69E+03a, 4.16E+03b

1s2 8p

1s2 4s

41,751.86

4.72E+03

4.26E+03a, 4.4E+03b

1s2 9p

1s2 4s

42,117.78

4.18E+03

3.43E+03a

1s2 10p

1s2 4s

42,379.09

3.52E+03

3.09E+03a

1s2 11p

1s2 4s

42,572.16

2.91E+03

4.83E+03a

1s2 12p

1s2 4s

42,718.85

2.40E+03

1.96E+03

1s2 13p

1s2 4s

42,832.90

1.98E+03

 

1s2 14p

1s2 4s

42,923.31

1.65E+03

 

1s2 15p

1s2 4s

42,996.21

1.38E + 03

 

1s2 16p

1s2 4s

43,055.82

1.16E+03

 

1s2 17p

1s2 4s

43,105.21

3.89E+02

 

1s2 18p

1s2 4s

43,146.57

8.46E+02

 

1s2 19p

1s2 4s

43,181.56

7.29E+02

 

1s2 20p

1s2 4s

43,211.42

6.32E+02

 

1s2 21p

1s2 4s

43,237.11

5.51E+02

 

1s2 22p

1s2 4s

43,259.37

4.83E+02

 

1s2 23p

1s2 4s

43,278.78

4.26E+02

 

1s2 24p

1s2 4s

43,295.82

3.77E+02

 

1s2 25p

1s2 4s

43,310.84

3.35E+02

 

1s2 26p

1s2 4s

43,324.17

2.99E+02

 

1s2 27p

1s2 4s

43,336.03

2.68E+02

 

1s2 28p

1s2 4s

43,346.65

2.42E+02

 

1s2 29p

1s2 4s

43,356.19

2.18E+02

 

1s2 30p

1s2 4s

43,364.78

1.98E+02

 
  1. aLingard [8], bNIST [5], c,dCelik [12], eZheng [11], fHeavens [6], gKostelecky[9]