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Highly accurate experimentally determined energy levels of H-3(+)

机译:高精度的实验确定的H-3(+)的能量水平

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A sub-Doppler rovibrational spectroscopic survey of H-3(+) has been conducted which included 36 transitions in the (2) 0 fundamental band, 15 transitions in the 2222 hot band, and 7 transitions in the 2220 overtone band, improving the uncertainties of most transitions by more than an order of magnitude to approximate to 4 MHz. Combination differences were used to determine relative energy levels and forbidden rotational transitions up to J = 6. A fit of the ground state to an effective Hamiltonian was used to connect ortho and para states, and to determine the absolute energy levels relative to the forbidden (0, 0) state. Ultimately, 62 rovibrational energy levels in the ground, (2), and 222 states were determined with approximate to 10 MHz uncertainty. Comparing the experimentally determined energy levels with ab initio calculations revealed an unexpected dependence of the residuals on the quantum number G.
机译:已经进行了对H-3(+)的副多普勒鲁钝光谱测量调查,其中包括(2)0的基本频带中的36转换,222中的15转换 2热带, 在2220隆起带中的7转换,提高大多数转换的不确定性超过一个数量级,以近似为4 MHz。 组合差异用于确定相对能量水平,禁止旋转转换至j = 6。地区稳定于有效的汉密尔顿人的拟合用于连接邻奥和议定态,并确定相对于禁止的绝对能量水平 0,0)状态。 最终,地面,(2)和222个州的62个振动能量水平,近似为10 MHz不确定性。 与AB初始计算的实验确定的能量水平揭示了量子数G上的残差意外依赖性。

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