Rotation Dependence of Electric Quadrupole Hyperfine Interaction in the Ground State of Molecular Iodine by High-Resolution Laser Spectroscopy
نویسندگان
چکیده
Doppler-free high-resolution spectroscopy is applied to molecular iodine at 532 nm by Nd:YAG lasers. The main hyperfine components as well as the crossover lines are measured for R(56)32-0 and P(54)32-0 transitions by heterodyne beating of two I 2-stabilized lasers. The measured hyperfine splittings including both main and crossover lines are fitted to a four-term Hamiltonian, which includes the electric quadrupole, spin– rotation, tensor spin–spin, and scalar spin–spin interactions, with an average deviation of ϳ1 kHz. Absolute values of the electric quadrupole hyperfine constants for both the upper and the lower states are obtained. The rotation dependence of the ground-state (vЉ ϭ 0) electric quadrupole constant eQqЉ is found to be eQqЉ(J) ϭ Ϫ2452.556(2) Ϫ 0.000164(5)J(J ϩ 1) Ϫ 0.000000005(2)J 2 (J ϩ 1) 2 MHz.
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