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首页> 外文期刊>The Journal of Chemical Physics >Automatic integration of the reaction path using diagonally implicit Runge-Kutta methods
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Automatic integration of the reaction path using diagonally implicit Runge-Kutta methods

机译:使用对角隐式Runge-Kutta方法自动整合反应路径

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The diagonally implicit Runge-Kutta framework is shown to be a general form for constructing stable, efficient steepest descent reaction path integrators, of any order. With this framework tolerance driven, adaptive step-size methods can be constructed by embedding methods to obtain error estimates of each step without additional computational cost. There are many embedded and nonembedded, diagonally implicit Runge-Kutta methods available from the numerical analysis literature and these are reviewed for orders two, three, and four. New embedded methods are also developed which are tailored to the application of reaction path following. All integrators are summarized and compared for three systems: the Muller-Brown [Theor. Chem. Acta 53, 75 (1979)] potential and two gas phase chemical reactions. The results show that many of the methods are capable of integrating efficiently while reliably keeping the error bound within the desired tolerance. This allows the reaction path to be determined through automatic integration by only specifying the desired accuracy and transition state. (c) 2006 American Institute of Physics.
机译:对角隐式的Runge-Kutta框架显示为构造稳定,有效的最陡下降反应路径积分器的任何形式的通用形式。在这种框架公差驱动下,可以通过嵌入方法构建自适应步长方法,以获取每个步骤的误差估计,而无需额外的计算成本。可以从数值分析文献中找到许多嵌入式和非嵌入式对角隐式Runge-Kutta方法,并对这些方法进行了二阶,三阶和四阶回顾。还开发了新的嵌入式方法,这些方法适合于反应路径跟踪的应用。归纳并比较了三个系统的所有积分器:Muller-Brown [理论。化学Acta 53,75(1979)]势和两个气相化学反应。结果表明,许多方法都能够有效集成,同时可靠地将误差范围保持在所需的公差范围内。这样,仅通过指定所需的精度和过渡状态,即可通过自动积分确定反应路径。 (c)2006年美国物理研究所。

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