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High Order Split Operators for the Time-Dependent Wavepacket method of Triatomic Reactive Scattering in Hyperspherical Coordinates

机译:高阶分开运营商用于超球坐标中的三语反应散射的时间依赖性波波皮耦合方法

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摘要

Since the introduction of a series of methods for solving the time-dependent Schrödinger equation (TDSE) in the 80s of the last centry, such as the Fourier transform, the split operator (SO), the Chebyshev polynomial propagator, and complex absorbing potential, investigation of the molecular dynamics within quantum mechanics principle have become popular. In this paper, the application of the time-dependent wave packet (TDWP) method using high-order SO propagators in hyperspherical coordinates for solving triatomic reactive scattering was investigated. The fast sine transform was applied to calculate the derivatives of the wave function of the radial degree of freedom. These high-order SO propagators are examined in different forms, i.e., TVT (Kinetic–Potential–Kinetic) and VTV (Potential–Kinetic–Potential) forms with three typical triatomic reactions, H + H 2, O + O 2 and F + HD. A little difference has been observed among the performances of high-order SO propagators in the TVT and VTV representations in the hyperspherical coordinate. For obtaining total reaction probabilities with 1% error, some of the S class high-order SO propagators, which have symmetric forms, are more efficient than second order SO for reactions involving long lived intermediate states. High order SO propagators are very efficient for obtaining total reaction probabilities.
机译:自引入一系列方法来解决最后中心的80年代的时间依赖的Schrödinger方程(TDSE),例如傅里叶变换,分流操作员(SO),Chebyshev多项式传播者和复杂的吸收电位量子力学原理中分子动力学的调查变得流行。本文研究了使用高阶所以在超球坐标中使用高阶的时间依赖波分组(TDWP)方法的应用,用于求解三语反应性散射的坐标。应用快速正弦变换以计算径向自由度的波浪函数的衍生物。这些高阶使得繁殖器以不同的形式检查,即TVT(动力学 - 电势 - 动力学)和VTV(电位 - 动力学)形式,具有三种典型的三族语反应,H + H 2,O + O 2和F +高清。在高阶和高频坐标中的高阶和VTV表示中的高阶宣传者的表演中,已经观察到一点差异。为了获得具有1%误差的总反应概率,其中一些高阶所以具有对称形式的传播者比涉及长期寿命中间状态的反应更有效。高阶使得传播者非常有效,以获得总反应概率。

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