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首页> 外文期刊>Molecular physics >Optimised polychromatic field-mediated suppression of H-atom tunnelling in a coupled symmetric double well: two-dimensional malonaldehyde model
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Optimised polychromatic field-mediated suppression of H-atom tunnelling in a coupled symmetric double well: two-dimensional malonaldehyde model

机译:对称对称双阱中H原子隧穿的最佳多色场介导抑制:二维丙二醛模型

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The cis-cis isomerisation motion of malonaldehyde can be modelled as a symmetric double well coupled with an asymmetric double well, which includes the effect of the cis-trans out-of-plane motion on the cis-cis motion. We have presented an effective method for having control over the tunnelling dynamics of the symmetric double well which is coupled with the asymmetric double well by monitoring tunnelling splitting. When a suitable external field is allowed to interact with the system, the tunnelling splitting gets modified. As the external time perturbation is periodic in nature, the Floquet theory can be applied to calculate the quasi-energies of the perturbed system and hence the tunnelling splitting. The Floquet analysis is coupled with a stochastic optimiser in order to minimise the tunnelling splitting, which is related to slowering of the tunnelling process. The minimisation has been done by one of the stochastic optimisers, simulated annealing. Optimisation has been performed on the parameters which define the external polychromatic field, such as intensities and frequencies of the components of the polychromatic field. With the optimised sets of parameters, we have followed the dynamics of the system and have found suppression of tunnelling which is manifested by a much higher tunnelling time.
机译:丙二醛的顺式-顺式异构化运动可被建模为对称的双井与不对称的双井耦合,其中包括顺-反面外运动对顺-顺式运动的影响。我们提出了一种有效的方法来控制对称双井的隧道动力学,该方法通过监视隧道分裂与非对称双井耦合。当允许合适的外部字段与系统交互时,将修改隧道拆分。由于外部时间扰动本质上是周期性的,因此可以将Floquet理论应用于计算扰动系统的准能量,从而计算隧道分裂。 Floquet分析与随机优化器相结合,以最大程度地减少隧穿分裂,这与隧穿过程的减慢有关。最小化是通过随机优化器之一模拟退火完成的。已对定义外部多色场的参数(例如多色场的分量的强度和频率)进行了优化。通过优化的参数集,我们跟踪了系统的动态,发现抑制了隧道传输,这是通过更长的隧道传输时间来体现的。

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