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ROTATIONAL ENERGY ANALYSIS FOR ROTATING-VIBRATING LINEAR MOLECULES IN CLASSICAL TRAJECTORY SIMULATION

机译:弹道仿真中旋转振动线性分子的旋转能量分析

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A method has been developed to evaluate the rotational energy of a rotating-vibrating linear molecule in classical trajectory simulation. The method is based on our finding that the component of the angular momentum perpendicular to the figure axis which closely approximates the pure rotational angular momentum is a fairly good constant of motion. Classical kinetic energy of the system has been reorganized to separate the rotational and vibrational parts according to the above concept. Time evolution of the rotational energy thus evaluated shows much less irregular behavior than the ones evaluated with the previous methods over a wide range of rotational and vibrational energies. Combined with the method for mode-specific vibrational energy analysis reported previously, the present method allows a reliable separation of the total energy into each degree of freedom. In particular, the accuracy of the present method seems to be good enough for the rotational energy determination at an instantaneous configuration point along a trajectory, enabling the classical study of real time dynamics. (C) 1997 American Institute of Physics. [S0021-9606(97)02047-3]. [References: 44]
机译:已经开发了一种在经典轨迹模拟中评估旋转振动线性分子的旋转能量的方法。该方法基于我们的发现,垂直于图形轴的角动量的分量非常接近纯旋转角动量,这是一个相当好的运动常数。根据上述概念,系统的经典动能已被重组以分离旋转部分和振动部分。如此评估的旋转能量的时间演化在广泛的旋转和振动能量范围内显示出比用先前方法评估的不规则行为少得多的不规则行为。结合先前报道的用于特定模式的振动能量分析的方法,本方法允许将总能量可靠地分离到每个自由度中。特别地,对于沿轨迹的瞬时配置点处的旋转能量确定而言,本方法的精度似乎足够好,从而使得能够进行实时动力学的经典研究。 (C)1997美国物理研究所。 [S0021-9606(97)02047-3]。 [参考:44]

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