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49
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33751362214
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-
Parr et al.20 and Burdenski et al.19 used the same real part of the optical potential as Siska's.18 Feltgen proposed several functional forms, and they obtained the best fit using the real part of Brutchy et al. for the singlet state and the imaginary part Tp in ref 11. Thus, we included Tp in Figure 2a. -4
-
Parr et al.20 and Burdenski et al.19 used the same real part of the optical potential as Siska's.18 Feltgen proposed several functional forms, and they obtained the best fit using the real part of Brutchy et al. for the singlet state and the imaginary part Tp in ref 11. Thus, we included Tp in Figure 2a. -4
-
-
-
-
50
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33751356301
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-
Kroon, et al. proposed two optical potentials. Each of the optical potentials uses a different pair of the real part and the imaginary part, and they concluded that optical potential I is preferable. Thus, we include only potential I. In the curve of Brutschy et al., there are two discontinuity at 2.43 and 2.65 A, which may come from a small significant digit in their parameters.17
-
Kroon, et al. proposed two optical potentials. Each of the optical potentials uses a different pair of the real part and the imaginary part, and they concluded that optical potential I is preferable. Thus, we include only potential I. In the curve of Brutschy et al., there are two discontinuity at 2.43 and 2.65 A, which may come from a small significant digit in their parameters.17
-
-
-
-
52
-
-
33751362927
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-
note
-
In ref 31, the magnitude was underestimated because the statistical factor of 3 for the triplet state was not taken into account. In Figure 2 of ref 31, all the curves except for total (Siska) should have been shifted upward by log 3 = 0.477.
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58
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0000429992
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Woodard, M. R.; Sharp, R. C.; Seely, M.; Muschlitz, E. E., Jr. J. Chem. Phys. 1978, 69, 2978.
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