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首页> 外文期刊>Optics and Spectroscopy >v(2)-Dependences of the Rotational Contributions to the Effective Dipole Moment of the H2O Molecule and Their Effect on the Broadening and Shift of Lines Induced by the Pressure of Buffer Gases
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v(2)-Dependences of the Rotational Contributions to the Effective Dipole Moment of the H2O Molecule and Their Effect on the Broadening and Shift of Lines Induced by the Pressure of Buffer Gases

机译:V(2) - 旋转贡献对H2O分子的有效偶极力矩的依赖性及其对缓冲气体压力诱导的线的扩大和转移的影响

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摘要

The dependences of the rotational contributions to the effective dipole moment of the H2O molecule on vibrational quantum number v(2), which corresponds to the large-amplitude bending vibration of the molecule, have been determined numerically. Different representations for the dipole moment surface of the H2O molecule and different potential functions that determine the set of vibrational states E(v(2)) have been used in calculations. The effect of the calculated contributions on the broadening and shift of H2O lines induced by the pressure of argon, krypton, hydrogen, and helium has been analyzed. It has been shown that this effect is significant for the shift of rotational lines and for the shift of lines from the vibrational bands for which the difference between the values of rotational quantum number K-a from the upper and lower states of the transition is greater than or equal to 3.
机译:在数值上确定了对应于分子的大幅度弯曲振动的H2O分子的有效偶极力矩的旋转贡献的依赖性。 H2O分子的偶极力矩表面的不同表示和确定振动状态e(V(2))的不同潜在函数已被用于计算。 分析了计算出的贡献对由氩气,氪,氢气和氦气压力诱导的H2O线的扩大和转移的影响。 已经表明,这种效果对于旋转线的偏移以及从转变的上部和下部状态的振动频带移动的旋转线的偏移以及从转变的上部和下部状态的差异大于或 等于3。

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