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Magnetpolaron effect in two-dimensional anisotropic parabolic quantum dot in a perpendicular magnetic field

Magnetpolaron effect in two-dimensional anisotropic parabolic quantum dot in a perpendicular magnetic field
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摘要 We study the two-dimensional weak-coupling Frohlich polaron in a completely anisotropic quantum dot in a perpendicular magnetic field. By performing a unitary transformation, we first transform the Hamiltonian into a new one which describes an anisotropic harmonic oscillator with new mass and trapping frequencies interacting with the same phonon bath but with different interaction form and strength. Then employing the second-order Rayleigh–Schrodinger perturbation theory, we obtain the polaron correction to the ground-state energy. The magnetic field and anisotropic effects on the polaron correction to the ground-state energy are discussed. We study the two-dimensional weak-coupling Frohlich polaron in a completely anisotropic quantum dot in a perpendicular magnetic field. By performing a unitary transformation, we first transform the Hamiltonian into a new one which describes an anisotropic harmonic oscillator with new mass and trapping frequencies interacting with the same phonon bath but with different interaction form and strength. Then employing the second-order Rayleigh–Schrodinger perturbation theory, we obtain the polaron correction to the ground-state energy. The magnetic field and anisotropic effects on the polaron correction to the ground-state energy are discussed.
机构地区 Department of Physics
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第9期381-388,共8页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.11375090) the K.C.Wong Magna Foundation in Ningbo University,China
关键词 Fr o¨hlich polaron anisotropic quantum dot magnetic field ground-state energy Fr o¨hlich polaron anisotropic quantum dot magnetic field ground-state energy
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