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Using the relationship between geometry and hyperpolarizability as a tool for developing new paradigms for molecular engineering

机译:利用几何和高分子化之间的关系作为开发用于分子工程新范式的工具

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We consider how geometry and symmetry alone play a role in determining the magnitude of the hyperpolarizability. Using potential energy functions given by a superposition of force centers representing nuclei, we find that for certain specific geometries, such as asymmetric octupolar-like molecule with donors and acceptors of varying strengths at the branches, the hyperpolarizability is near the fundamental limit. The fact that the hyperpolarizability, when it is at the fundamental limit, is well approximated by a three-level model confirms the three-level ansatz. Our results suggest new design strategies for breaking beyond the apparent limit.
机译:我们考虑单独的几何和对称性在确定超极化性的幅度时起作用。使用代表核的势级叠加给出的势能函数,我们发现,对于某些特定几何形状,例如在分支机构中具有施主的非对称ockolar样分子,如分支的不同强度的受体,高分子化是靠近基本限制。在基本极限处于基本限制时,通过三级模型确认三级ansatz,这是一个超极化性的事实。我们的成果介绍了突破明显限制的新设计策略。

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