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In Quest of Molecular Materials for Quantum Cellular Automata: Exploration of the Double Exchange in the Two-Mode Vibronic Model of a Dimeric Mixed Valence Cell

机译:在追求量子细胞自动机的分子材料:二聚体混合价细胞两样振动模型中的双重交换探索

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摘要

In this article, we apply the two-mode vibronic model to the study of the dimeric molecular mixed-valence cell for quantum cellular automata. As such, we consider a multielectron mixed valence binuclear d2−d1–type cluster, in which the double exchange, as well as the Heisenberg-Dirac-Van Vleck exchange interactions are operative, and also the local (“breathing”) and intercenter vibrational modes are taken into account. The calculations of spin-vibronic energy spectra and the “cell-cell”-response function are carried out using quantum-mechanical two-mode vibronic approach based on the numerical solution of the dynamic vibronic problem. The obtained results demonstrate a possibility of combining the function of molecular QCA with that of spin switching in one electronic device and are expected to be useful from the point of view of the rational design of such multifunctional molecular electronic devices.
机译:在本文中,我们将双模振动模型应用于量子细胞自动机二聚体分子混合价电池的研究。因此,我们考虑一种多电元混合价均核D2-D1型簇,其中双交换,以及Heisenberg-Diac-Van Vleck交换相互作用,以及当地(“呼吸”)和Intercenter振动考虑到模式。基于动态振动问题的数值解的量子机械双模振动方法进行旋转振动能谱和“细胞 - 细胞” - 响应功能的计算。所得结果证明了将分子QCA的功能与一个电子设备中的旋转切换相结合的可能性,并且预期从这种多功能分子电子设备的合理设计的角度使用。

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