期刊文献+

Franck-Condon factors and γ-Centroids for the A^1 ∑^+ u-X^1∑^+ 9 Band System of ^107,109Ag2: Comparison of the Observed and Calculated Absorption Band Strengths

Franck-Condon factors and γ-Centroids for the A^1 ∑^+ u-X^1∑^+ 9 Band System of ^107,109Ag2: Comparison of the Observed and Calculated Absorption Band Strengths
下载PDF
导出
摘要 Franck-Condon factors and r-centrolds for the, A^1 ∑^+ u-X^1∑^+ 9 band system of ^107,109Ag2 are computed using Morse and Rydberg-Klein-Rees potentials for both lower and upper electronic states. The differences between the two sets of results are typically in the third decimal place for transitions involving vibrational levels with ν' and ν" up to about 15. Somewhat larger deviations appear for higher vibrational levels, but both sets of results follow the same pattern, which is to match well with the relative absorption band strength distribution in our experimental spectrum. The relative absorption band strengths are calculated by assuming that the electronic transition moment has only a weak dependence on the internuclear distance r. Good agreement between our measured and calculated absorption band strength ratios is found, which provides an excellent test of the calculated Franck- Condon factors and relative absorption band strengths. The r-centrold value for the (ν' = 0, ν" = 0) band is found to be approximately equal to the average value of r' and r''e , indicating that the potentials of both states are not significantly aaharmonic around their minimum regions. Franck-Condon factors and r-centrolds for the, A^1 ∑^+ u-X^1∑^+ 9 band system of ^107,109Ag2 are computed using Morse and Rydberg-Klein-Rees potentials for both lower and upper electronic states. The differences between the two sets of results are typically in the third decimal place for transitions involving vibrational levels with ν' and ν" up to about 15. Somewhat larger deviations appear for higher vibrational levels, but both sets of results follow the same pattern, which is to match well with the relative absorption band strength distribution in our experimental spectrum. The relative absorption band strengths are calculated by assuming that the electronic transition moment has only a weak dependence on the internuclear distance r. Good agreement between our measured and calculated absorption band strength ratios is found, which provides an excellent test of the calculated Franck- Condon factors and relative absorption band strengths. The r-centrold value for the (ν' = 0, ν" = 0) band is found to be approximately equal to the average value of r' and r''e , indicating that the potentials of both states are not significantly aaharmonic around their minimum regions.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2007年第9期2566-2568,共3页 中国物理快报(英文版)
  • 相关文献

参考文献14

  • 1Kleman B and Lindkvist S 1955 Arkiv Fysik 9 385.
  • 2Ruamps J 1959 Ann. Phys. Paris 4 1111.
  • 3Maheshwari R C 1963 Ind. J. Phys. 37 368.
  • 4Brown G M and Ginter M L 1978 J. Mol. Spectrosc. 69 25.
  • 5Simmard B et al 1991 Chem. Phys. Lett. 186 415.
  • 6Kramer H G et al 1992 Chem. Phys. Lett. 193 331.
  • 7Beutel V et al 1993 J. Chem Phys. 98 2699.
  • 8Freser P A 1954 Can. J. Phys. 32 515.
  • 9Nicholls R W and Jermain W R 1956 Proc. Phys. Soc. LXIX 3-A 253.
  • 10Nicholls R W and Stewart A L 1962 Atomic and Molecular Processes ed Bates D R (New York: Academic).

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部