Richter Martin, Marquetand Philipp, González-Vázquez Jesús, Sola Ignacio, González Leticia
Institut für Physikalische Chemie, Friedrich-Schiller-Universität Jena, Helmholtzweg 4, 07743 Jena, Germany.
Departamento de Química Física I, Universidad Complutense, 28040 Madrid, Spain.
J Chem Theory Comput. 2011 May 10;7(5):1253-8. doi: 10.1021/ct1007394. Epub 2011 Mar 29.
We present a semiclassical surface-hopping method which is able to treat arbitrary couplings in molecular systems including all degrees of freedom. A reformulation of the standard surface-hopping scheme in terms of a unitary transformation matrix allows for the description of interactions like spin-orbit coupling or transitions induced by laser fields. The accuracy of our method is demonstrated in two systems. The first one, consisting of two model electronic states, validates the semiclassical approach in the presence of an electric field. In the second one, the dynamics in the IBr molecule in the presence of spin-orbit coupling after laser excitation is investigated. Due to an avoided crossing that originates from spin-orbit coupling, IBr dissociates into two channels: I + Br((2)P3/2) and I + Br*((2)P1/2). In both systems, the obtained results are in very good agreement with those calculated from exact quantum dynamical simulations.
我们提出了一种半经典表面跳跃方法,该方法能够处理分子系统中的任意耦合,包括所有自由度。通过酉变换矩阵对标准表面跳跃方案进行重新表述,可以描述诸如自旋轨道耦合或激光场诱导的跃迁等相互作用。我们的方法在两个系统中得到了验证。第一个系统由两个模型电子态组成,验证了在电场存在下的半经典方法。在第二个系统中,研究了激光激发后存在自旋轨道耦合时IBr分子的动力学。由于自旋轨道耦合导致的避免交叉,IBr分解为两个通道:I + Br((2)P3/2) 和I + Br*((2)P1/2)。在这两个系统中,所获得的结果与通过精确量子动力学模拟计算得到的结果非常吻合。