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The rotational spectrum of the FeD radical in its X 4 state, measured by far-infrared laser magnetic resonance

机译:FeD自由基在X 4状态下的旋转光谱,通过远红外激光磁共振测量

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摘要

Transitions between the spin-rotational levels of the FeD radical in the v=0 level of the X 4 ground state have been detected by the technique of laser magnetic resonance at far-infrared wavelengths. Pure-rotational transitions have been observed for the three lowest spin components. Lambda-type doubling is resolved on all the observed transitions; nuclear hyperfine structure is not observed. The energy levels of FeD are strongly affected by the breakdown of the Born-Oppenheimer approximation and cannot be modeled accurately by an effective Hamiltonian. The data are therefore fitted to an empirical formula to yield term values and g-factors for the various spin-rotational levels involved.
机译:FeD自由基的自旋旋转能级在X 4基态的v = 0能级之间的转变已通过激光磁共振技术在远红外波长处检测到。已观察到三个最低自旋分量的纯旋转跃迁。 Lambda类型加倍在所有观察到的跃迁上得到解析;没有观察到核超细结构。 FeD的能级受Born-Oppenheimer近似分解的强烈影响,无法通过有效的哈密顿量精确建模。因此,将数据拟合为经验公式,以得出所涉及的各种自旋旋转水平的项值和g因子。

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