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Frequency measurements and hyperfine structure of the R(85)33-0 transition of molecular iodine with a femtosecond optical comb

机译:飞秒光学梳对分子碘的R(85)33-0跃迁进行频率测量和超精细结构

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Absolute frequency measurements of the R(85)33-0 transition of molecular iodine at the blue end of the tuning range of a frequency-doubled Nd:YAG laser are implemented with a femtosecond optical comb based on a mode-locked Ti:sapphire laser. The hyperfine structure of the R(85)33-0 transition is observed by use of high-resolution laser spectroscopy and is measured by the femtosecond optical comb. The observed hyperfine transitions are good frequency references for both frequency-doubled Nd:YAG and Nd:YVO4 lasers in the 532-nm region. High-accuracy hyperfine constants are obtained by our fitting the measured hyperfine splittings to a four-term Hamiltonian, which includes the electric quadrupole, spin-rotation, tensor spin-spin, and scalar spin-spin interactions. (C) 2004 Optical Society of America.
机译:使用基于锁模Ti:蓝宝石激光器的飞秒光学梳实现了倍频Nd:YAG激光器调谐范围蓝端处分子碘的R(85)33-0跃迁的绝对频率测量。 R(85)33-0过渡的超精细结构是通过使用高分辨率激光光谱法观察到的,并且是通过飞秒光学梳测量的。对于在532 nm区域中倍频的Nd:YAG和Nd:YVO4激光器,观察到的超精细跃迁都是很好的频率参考。高精度超精细常数是通过将测得的超精细裂变拟合为四项哈密顿量获得的,该四项哈密顿量包括电四极子,自旋旋转,张量自旋自旋和标量自旋自旋相互作用。 (C)2004年美国眼镜学会。

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