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Physical Mechanism of the Crossover of Ground State Energy Levels in Linear H directX h Systems

机译:线性H DirectX H系统中地位能量水平交叉的物理机制

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The icosahedral H directX h Jahn-Teller (JT) system has vibronic ground states of H and A symmetries. Previous calculations have shown that the H state is lowest in weak coupling but that as the coupling increases, a crossover occurs. Thus the A state becomes the ground state in strong coupling. Calculations reported here show that the origin of the crossover is related to the existence of two types of tunnelling paths on the lowest adiabatic potential energy surface (APES). In weak coupling, tunnelling along a C_1-type path is favoured whilst in strong coupling a C_2 path is favoured. The two paths have different Berry phases, which results in a change in sign of the splitting between the states as deduced using the WKB approximation.
机译:IcosaheDral H DirectX H Jahn-Teller(JT)系统具有H和对称的颤音地位。以前的计算表明,H状态在弱耦合中最低,但随着耦合增加,发生交叉。因此,状态成为强耦合的地位。这里报道的计算表明,交叉的原点与最低绝热势能表面(APE)上的两种类型的隧道路径的存在有关。在弱耦合方面,沿着C_1型路径的隧道串联在强耦合时偏爱C_2路径。这两条路径具有不同的浆果阶段,这导致使用WKB近似推导的状态之间分裂的符号的变化。

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