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Spectroscopic parameter and molecular constant investigations for low-lying electronic states of P2 molecule

机译:P2分子低电子态的光谱参数和分子常数研究

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摘要

The potential energy curves (PECs) of four low-lying electronic states of the P_2 molecule, and X~1∑~+_g a~3∑~+_u, b~('3)∑~0_u and A~1II_g, have been studied using the full valence complete active space self-consistent field (CASSCF) method followed by the highly accurate valence internally contracted multireference configuration interaction (MRCI) approach in combination with correlation-consistent basis set, aug-cc-pV6Z, in the valence range. Using these PECs, the spectroscopic parameters for these electronic states are determined and compared in detail with those of previous studies reported in the literature. The comparison shows that excellent agreement exists between the present results and the available experiments. By solving the radial Schrdinger equation of nuclear motion, the first 30 vibrational states for the four electronic states are computed when the rotational quantum number J equals zero. For each vibrational state, the vibrational level G([upsilon]), inertial rotation constant B_v and centrifugal distortion constant D[upsilon] are determined when J=0, which are in good accord with the available measurements.
机译:P_2分子的四个低位电子态和X〜1∑〜+ _g a〜3∑〜+ _u,b〜('3)∑〜0_u和A〜1II_g的势能曲线(PEC)具有使用全价完全活动空间自洽场(CASSCF)方法,然后在价中结合高度一致的价态内部收缩多引用配置交互(MRCI)方法和相关一致的基础集aug-cc-pV6Z进行了研究范围。使用这些PEC,可以确定这些电子态的光谱参数,并将其与文献中报道的先前研究进行详细比较。比较表明,目前的结果和可用的实验之间存在极好的一致性。通过求解核运动的径向薛定inger方程,当旋转量子数J等于零时,计算出四个电子态的前30个振动态。对于每个振动状态,当J = 0时,确定振动水平G([),惯性旋转常数B_v和离心变形常数D [,这与可用的测量非常吻合。

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