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Hartree-Fock approximation of bipolaron state in quantum dots and wires

机译:量子点和线中双极化子态的Hartree-Fock近似

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The bipolaronic ground state of two electrons in a spherical quantum dot or a quantum wire with parabolic boundaries is studied in the strong electron-phonon coupling regime. We introduce a variational wave function that can conveniently conform to represent alternative ground state configurations of the two electrons, namely, the bipolaronic bound state, the state of two individual polarons, and two nearby interacting polarons confined by the external potential. In the bipolaron state the electrons are found to be separated by a finite distance about a polaron size. We present the formation and stability criteria of bipolaronic phase in confined media. It is shown that the quantum dot confinement extends the domain of stability of the bipolaronic bound state of two electrons as compared to the bulk geometry, whereas the quantum wire geometry aggravates the formation of stable bipolarons.
机译:在强电子-声子耦合机制下,研究了球形量子点或带抛物线边界的量子线中两个电子的双极基态。我们介绍了一个变分波函数,它可以方便地符合以表示两个电子的替代基态配置,即双极化子束缚态,两个单独的极化子的状态以及由外部电势限制的两个邻近的相互作用极化子。在双极化子状态下,发现电子被隔开约一个极化子尺寸的有限距离。我们提出了在受限介质中双极子相的形成和稳定性标准。结果表明,与本体几何形状相比,量子点限制扩展了两个电子的双极子束缚态的稳定性域,而量子线几何形状则加剧了稳定双极子的形成。

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