Doi Atsushi, Kasahara Shunji, Katô Hajime, Baba Masaaki
Molecular Photoscience Research Center, Kobe University, Nada-ku, Kobe 657-8501, Japan.
J Chem Phys. 2004 Apr 8;120(14):6439-48. doi: 10.1063/1.1651479.
Sub-Doppler high-resolution excitation spectra and the Zeeman effects of the 6(0)(1), 1(0)(1)6(0)(1), and 1(0)(2)6(0)(1) bands of the S1(1)B2u<--S(0)(1)A1g transition of benzene were measured by crossing laser beam perpendicular to a collimated molecular beam. 1593 rotational lines of the 1(0) (1)6(0) (1) band and 928 lines of the 1(0)(2)6(0)(1) band were assigned, and the molecular constants of the excited states were determined. Energy shifts were observed for the S1(1)B2u(v1=1,v6=1,J,Kl=-11) levels, and those were identified as originating from a perpendicular Coriolis interaction. Many energy shifts were observed for the S1(1)B2u(v1=2,v6=1,J,Kl) levels. The Zeeman splitting of a given J level was observed to increase with K and reach the maximum at K=J, which demonstrates that the magnetic moment lies perpendicular to the molecular plane. The Zeeman splittings of the K=J levels were observed to increase linearly with J. From the analysis, the magnetic moment is shown to be originating mostly from mixing of the S1(1)B2u and S2(1)B1u states by the J-L coupling (electronic Coriolis interaction). The number of perturbations was observed to increase as the excess energy increases, and all the perturbing levels were found to be a singlet state from the Zeeman spectra.
通过使激光束与准直分子束垂直交叉,测量了苯的S1(1)B2u<--S(0)(1)A1g跃迁的6(0)(1)、1(0)(1)6(0)(1)和1(0)(2)6(0)(1)带的亚多普勒高分辨率激发光谱和塞曼效应。确定了1(0)(1)6(0)(1)带的1593条转动线和1(0)(2)6(0)(1)带的928条线,并测定了激发态的分子常数。观察到S1(1)B2u(v1 = 1, v6 = 1, J, Kl = -11)能级的能量位移,确定其源于垂直科里奥利相互作用。观察到S1(.)B2u(v1 = 2, v6 = 1, J, Kl)能级有许多能量位移。观察到给定J能级的塞曼分裂随K增加而增大,并在K = J时达到最大值,这表明磁矩垂直于分子平面。观察到K = J能级的塞曼分裂随J线性增加。分析表明,磁矩主要源于J - L耦合(电子科里奥利相互作用)导致的S1(1)B2u和S2(1)B1u态的混合。观察到微扰数随过剩能量增加而增加,并且从塞曼光谱发现所有微扰能级都是单重态。