首页> 外文会议>NATO Advanced Research Workshop on Colossal Magnetoresistance and Vibronic Interactions, and the Fifteenth International Symposium on the Jahn-Teller Effect >Franck-Condon approximation for second order reduction factors: application to vibronic reduction in fullerenes
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Franck-Condon approximation for second order reduction factors: application to vibronic reduction in fullerenes

机译:用于二阶减少因素的Franck-Condon近似:在富勒烯的颤音减少应用

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We present the general theory of the Franck-Condon approximation applied to the problem of second-order Jahn-Teller reduction factors. It is based upon the assumption that, at strong coupling, the major contributions to the reduction factors originate from 'vertical transitions' from a minimum in the ground adiabatic potential energy surface (APES) to excited vibronic states associated with the upper sheets of the APES. This reduces the otherwise infinite number of excited vibronic states to a finite number. This theory is applied to the example of spin-orbit coupling in the fullerene anion C{sub}60{sup}-.
机译:我们介绍了弗拉克 - 坦克近似的一般理论,适用于二阶JAHN柜员减少因子问题。它基于假设,在强耦合下,减少因子的主要贡献从地面绝热势能表面(APES)中的最小值起源于与猿类上床单相关的激发振动状态的“垂直转变” 。这将否则无限数量的激励的振动状态减少到有限数量。该理论应用于富勒烯阴离子C {sub} 60 {sup}中的旋转轨道耦合的例子。

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