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首页> 外文期刊>International Journal of Quantum Chemistry >Critical stability and quantum phase transition of screened two-electron system
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Critical stability and quantum phase transition of screened two-electron system

机译:屏蔽双电子系统的关键稳定性和量子相变

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摘要

The ground state energy and structural properties of a model two-electron system (Zee), bound via screened Coulomb interaction with nuclear charge Z, have been studied under the variational framework. Hylleraas type basis has been adopted for explicit incorporation of the electron-electron correlation. Critical nuclear charges (Z(c)) of Zee system have been reported for different screening parameters (mu). Expectation values of different structural properties have been estimated to predict the internal structure of the Zee system. The variation of the structural properties with respect to Z for different mu reveals the signature of quantum phase transition (QPT) in the vicinity of Z(c). Moreover, the nature of variation of these properties with respect to Z in case of bare Coulomb or free system (mu = 0) is completely opposite to those of screened system (mu not equal 0). Radial two-particle density (TPD) confirms the symmetry breaking of the electronic structure and therefore QPT in the vicinity of Z(c).
机译:在变分框架下,研究了模型两电子系统(Zee)的地位能量和结构特性,通过屏蔽库Z Z的核电荷Z。已经采用了Hylleraas类型的基础,用于显式掺入电子相关性。据报道,ZEE系统的临界核电(Z(c))针对不同的筛选参数(MU)。据估计,据估计不同结构特性的期望值以预测ZEE系统的内部结构。对于不同MU的结构特性的变化揭示了Z(C)附近的量子相转变(QPT)的特征。此外,在裸Coulomb或自由系统(MU = 0)的情况下,这些性质相对于Z的变化的性质与筛选系统(MU不等于0)完全相反。径向双粒子密度(TPD)证实了电子结构的对称性断开,因此QPT在Z(C)附近。

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