172
M. F. Ciappina et al.
dc 33
dt
= −c 33 w(ν 33 , 0, 0; t) + 2c 32 w(ν 32 , 0, 0; t)
+
1
3
c
32 [w(ν
32 , 1, 0; t) + 2w(ν
32 , 1, ±1; t)],
(B45)
dc
33
dt
= −
1
3
c
33 [w(ν
33 , 1, 0; t) + 2w(ν
33 , 1, ±1; t)]
+ c
32 w(ν
32 , 0, 0; t) +
2
3
c
32 [w(ν
32 , 1, 0; t) + 2w(ν
32 , 1, ±1; t)],
(B46)
dc 34
dt
= c 33 w(ν 33 , 0, 0; t) +
1
3
c
33 [w(ν
33 , 1, 0; t)
+ 2w(ν
33 , 1, ±1; t)] − 2c 34 w(ν 34 , 0, 0; t).
(B47)
Table 8.1 Parameters for the first ionization cascade of Kr
Ionic
state
e-configuration I p (eV) ν
C 2
l
m
B lm
Kr 26+
1s 2 2s 2 2 p 6
2 929
1.840
0.315
1
0
3
Kr 26+
1s 2 2s 2 2 p 6
2 929
1.840
0.315
1
±1
3/2
Kr 27+
1s 2 2s 2 2 p 5
3 072
1.863
0.319
1
0
3
Kr 27+
1s 2 2s 2 2 p 5
3 072
1.863
0.319
1
±1
3/2
Kr 28+
1s 2 2s 2 2 p 4
3 238
1.882
0.321
1
0
3
Kr 28+
1s 2 2s 2 2 p 4
3 238
1.882
0.321
1
±1
3/2
Kr 29+
1s 2 2s 2 2 p 3
3 381
1.903
0.322
1
0
3
Kr 29+
1s 2 2s 2 2 p 3
3 381
1.903
0.322
1
±1
3/2
Kr 30+
1s 2 2s 2 2 p 2
3 584
1.910
0.325
1
0
3
Kr 30+
1s 2 2s 2 2 p 2
3 584
1.910
0.325
1
±1
3/2
Kr 31+
1s 2 2s 2 2 p
3 752
1.927
0.327
1
0
3
Kr 31+
1s 2 2s 2 2 p
3 752
1.927
0.327
1
±1
3/2
Kr 32+
1s 2 2s 2
3 971
1.931
1.030
0
0
1
Kr 33+
1s 2 2s
4 108
1.956
1.029
0
0
1
Kr 34+
1s 2
17 296 0.981
0.990
0
0
1
Kr 35+
1s
17 936 0.995
0.995
0
0
1
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