首页> 外文期刊>Journal of chemical theory and computation: JCTC >Vibrational Coupled Cluster Computations in Polyspherical Coordinates with the Exact Analytical Kinetic Energy Operator
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Vibrational Coupled Cluster Computations in Polyspherical Coordinates with the Exact Analytical Kinetic Energy Operator

机译:具有精确分析动能运算符的多电阻坐标中的振动耦合簇计算

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摘要

We present the first use of curvilinear vibrational coordinates, specifically polyspherical coordinates, in combination with vibrational coupled cluster theory. The polyspherical coordinates are used in the context of both the adaptive density-guided approach to potential energy surface construction and in the subsequent vibrational coupled cluster calculations of anharmonic vibrational states. Results obtained based on the polyspherical coordinate parametrization are compared to results obtained with the use of rectilinear vibrational coordinates, namely, normal coordinates and hybrid optimized and localized coordinates for the formaldehyde molecule. This comparison is carried out with the full vibrational configuration interaction model, using the respective fully coupled potential energy surfaces and untruncated kinetic energy operators. The polyspherical coordinates are shown to facilitate an acceleration of convergence for truncated methods when compared to the use of normal coordinates. We furthermore report on calculations on the hydrogen peroxide molecule in the polyspherical coordinate parametrization. The polyspherical vibrational coordinates are shown to perform very well, even for truncated methods, especially when considering the difficulty that rectilinear vibrational coordinates can exhibit in treating complicated internal molecular motion.
机译:我们介绍了第一次使用曲线振动坐标,特别是聚面界坐标,与振动耦合的簇理论组合。在潜在能量表面构建的自适应密度引导方法和随后的Anharmonic振动状态下,聚面位坐标用于施加能量表面构造的背景。将基于多色坐标坐标参数化获得的结果与使用直线振动坐标,即正常坐标和杂种优化和甲醛分子的杂化优化和局部坐标获得的结果。使用相应的完全耦合的电位能量表面和未被棘手的动能运算符来执行该比较。与使用正常坐标相比,显示多色坐标促进截短方法的加速度加速。我们进一步报道了多氧化物坐标参数化中过氧化氢分子的计算。显着的聚接振动坐标表现得非常好,即使对于截短的方法,尤其是在考虑直线振动坐标可以表现出复杂的内部分子运动中的难度时,尤其是在考虑难以表现出复杂的内部分子运动中的困难时。

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