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Direct dynamics simulations using Hessian-based predictor-corrector integration algorithms

机译:使用基于Hessian的预测器-校正器集成算法的直接动力学模拟

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In previous research [J. Chem. Phys. 111, 3800 (1999)] a Hessian-based integration algorithm was derived for performing direct dynamics simulations. In the work presented here, improvements to this algorithm are described. The algorithm has a predictor step based on a local second-order Taylor expansion of the potential in Cartesian coordinates, within a trust radius, and a fifth-order correction to this predicted trajectory. The current algorithm determines the predicted trajectory in Cartesian coordinates, instead of the instantaneous normal mode coordinates used previously, to ensure angular momentum conservation. For the previous algorithm the corrected step was evaluated in rotated Cartesian coordinates. Since the local potential expanded in Cartesian coordinates is not invariant to rotation, the constants of motion are not necessarily conserved during the corrector step. An approximate correction to this shortcoming was made by projecting translation and rotation out of the rotated coordinates. For the current algorithm unrotated Cartesian coordinates are used for the corrected step to assure the constants of motion are conserved. An algorithm is proposed for updating the trust radius to enhance the accuracy and efficiency of the numerical integration. This modified Hessian-based integration algorithm, with its new components, has been implemented into the VENUS/NWChem software package and compared with the velocity-Verlet algorithm for the H2CO -> H-2+CO, O-3+C3H6, and F-+CH3OOH chemical reactions. (c) 2007 American Institute of Physics.
机译:在以前的研究中[J.化学物理111,3800(1999)]推导了一种基于Hessian的积分算法,用于执行直接动力学仿真。在此处介绍的工作中,描述了对该算法的改进。该算法具有预测值步长,该步长基于在信任半径内的笛卡尔坐标中电势的局部二阶泰勒展开和对该预测轨迹的五阶校正。当前算法确定笛卡尔坐标中的预测轨迹,而不是先前使用的瞬时法向模式坐标,以确保角动量守恒。对于先前的算法,在旋转的笛卡尔坐标中评估了校正的步骤。由于在笛卡尔坐标系中扩展的局部电势对于旋转不是不变的,因此在校正步骤中不一定要保持运动常数。通过将平移和旋转投影到旋转坐标之外,可以对此缺陷进行近似纠正。对于当前算法,未旋转的笛卡尔坐标用于校正步骤,以确保保留运动常数。提出了一种更新信任半径的算法,以提高数值积分的准确性和效率。这种经过修改的基于Hessian的积分算法及其新组件已在VENUS / NWChem软件包中实现,并与H2CO-> H-2 + CO,O-3 + C3H6和F的速度-Verlet算法进行了比较-+ CH3OOH化学反应。 (c)2007年美国物理研究所。

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