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Femtosecond degenerate four-wave mixing of cyclopropane

机译:飞秒简并四波环丙烷混合

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Femtosecond degenerate four-wave mixing (fs-DFWM) is applied for the measurement of rotational constants of cyclopropane (C3H6). The rotational coherence method yields a very accurate B-0=20 093.322(12) MHz and centrifugal distortion constants D-J and D-JK. To exploit the full resolution of the fs-DFWM method, the accuracy of the optical delay measurement was increased by nearly two orders of magnitude, including elimination of effects from the refractive index of air. The fs-DFWM molecular constants are comparable in accuracy to those from high-resolution infrared spectroscopy and are only surpassed by those of dipole distortion microwave spectroscopy. In parallel, the equilibrium structure, vibrationally averaged structure parameters and rotational constants were calculated using high-level ab initio methods and large basis sets. Combining these with the results of previous calculations and the measured rotational constants yields r(e)(C-C)=1.5034(3) A, r(e)(C-H)=1.0775(5) A, and alpha(e)(H-C-H)=115.09(10)degrees. (C) 2005 American Institute of Physics.
机译:飞秒简并四波混频(fs-DFWM)用于测量环丙烷(C3H6)的旋转常数。旋转相干法产生非常精确的B-0 = 20 093.322(12)MHz,离心畸变常数D-J和D-JK。为了充分利用fs-DFWM方法的分辨率,光学延迟测量的精度提高了近两个数量级,其中包括消除了空气折射率的影响。 fs-DFWM分子常数的精度可与高分辨率红外光谱法相比,并且仅被偶极畸变微波光谱法所超越。并行地,使用高级从头算方法和大基集来计算平衡结构,振动平均结构参数和旋转常数。将它们与先前计算的结果和测得的旋转常数结合起来可得出r(e)(CC)= 1.5034(3)A,r(e)(CH)= 1.0775(5)A和alpha(e)(HCH) = 115.09(10)度。 (C)2005美国物理研究所。

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