Mixed Magnetic and Electric Dipole Transition in s-Triazine
Robin M. Hochstrasser, Tien‐Sung Lin, Ahmed H. Zewail
Abstract
Robin M. Hochstrasser, Tien‐Sung Lin, Ahmed H. Zewail
Abstract
We have shown that the radiation pattern for absorption to the lowest energy excited singlet state of s-triazine corresponds to that of a mixed electric and magnetic dipole transition. This was done by demonstrating, for the first time with an organic, the classic procedure of obtaining absorption coefficients for different k, ε̂, and Ĥ for a uniaxial arrangement of molecules. We find the 30 014 cm−1 transition of s-triazine to be 26% magnetic and 74% electric dipole, hence the state symmetry is 1E in the crystal field, and 1E″ in the free molecule (D3h).
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We have shown that the radiation pattern for absorption to the lowest energy excited singlet state of s-triazine corresponds to that of a mixed electric and magnetic dipole transition. This was done by demonstrating, for the first time with an organic, the classic procedure of obtaining absorption coefficients for different k, ε̂, and Ĥ for a uniaxial arrangement of molecules. We find the 30 014 cm−1 transition of s-triazine to be 26% magnetic and 74% electric dipole, hence the state symmetry is 1E in the crystal field, and 1E″ in the free molecule (D3h).
Key concepts: Magnetic dipole transition, Magnetic dipole, Excited state, Electric dipole transition, Dipole, Triazine, Electric field, Absorption (acoustics)