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Mixed Magnetic and Electric Dipole Transition in s-Triazine

Robin M. Hochstrasser, Tien‐Sung Lin, Ahmed H. Zewail

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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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What this paper is about

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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Available 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).

Key concepts: Magnetic dipole transition, Magnetic dipole, Excited state, Electric dipole transition, Dipole, Triazine, Electric field, Absorption (acoustics)

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