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首页> 外文期刊>Journal of physical chemistry letters >Quantum Tunneling Rates of Gas-Phase Reactions from On-the-Fly Instanton Calculations
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Quantum Tunneling Rates of Gas-Phase Reactions from On-the-Fly Instanton Calculations

机译:通过即时瞬子计算计算气相反应的量子隧穿速率

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The instanton method obtains approximate tunneling rates from the minimum-action path (known as the instanton) linking reactants to the products at a given temperature. An efficient way to find the instanton is to search for saddle-points on the ring-polymer potential surface, which is obtained by expressing the quantum Boltzmann operator as a discrete path-integral. Here we report a practical implementation of this ring-polymer form of instanton theory into the Molpro electronic-structure package, which allows the rates to be computed on-the-fly, without the need for a fitted analytic potential-energy surface. As a test case, we compute tunneling rates for the benchmark H + CH4 reaction, showing how the efficiency of the instanton method allows the user systematically to converge the tunneling rate with respect to the level of electronic-structure theory.
机译:瞬时法从给定温度下将反应物连接到产物的最小作用路径(称为瞬时)获得近似的隧穿速率。查找瞬时子的有效方法是在环状聚合物势能面上搜索鞍点,这是通过将量子玻尔兹曼算子表示为离散路径积分而获得的。在这里,我们将这种瞬子理论的环状聚合物形式报告到Molpro电子结构包中的实际实现方式,该实现方式可以即时计算速率,而无需安装合适的分析势能面。作为一个测试案例,我们计算了基准H + CH4反应的隧穿速率,显示了实例法的效率如何使用户相对于电子结构理论的水平系统地收敛隧穿速率。

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