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中国物理学会期刊

非对称量子点中磁极化子性质的磁场和温度依赖性

CSTR: 32037.14.aps.57.7100

Magnetic field and temperature dependence of the properties of the magnetopolaron in an asymmetric quantum dot

CSTR: 32037.14.aps.57.7100
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  • 采用Tokuda线性组合算符法和Lee-Low-Pines变换法,研究了温度和磁场对非对称抛物量子点中强耦合磁极化子性质的影响,简捷地得到了作为量子点的横向受限强度ω1、纵向受限强度ω2、电子-声子耦合强度α、外磁场的回旋频率ωc和温度参数γ的函数的磁极化子的振动频率λ、基态能量E0和有效质量m

     

    The influence of the magnetic field and temperature on the properties of the strong-coupling magnetopolaron in an asymmetric quantum dot is studied by using the Tokuda’s linear-combination operator and the Lee-Low-Pines variational method. The expressions for the vibration frequency λ, ground state energy E0 and the effective mass m* of the magnetopolaron as a function of the transverse effective confinement strength ω1, the longitudinal effective confinement strength ω2, the electron-phonon coupling strength α, the cyclotron frequency ωc and the temperature parameter γ are derived. Numerical results indicate that λ and m* of the magnetopolaron will increase with increasing ω1,ω2,ωc and α, and will decrease with increasing temperature T. The value of E0 changing with ω1,ω2,ωc,α and γ are srongly related to the propties of the state of the magnetopolaron. The signs of positeve and negative E0 relate not only to the value of ω1,ω2,ωc and α but also to the value of γ. However, only on the condition of higher temperature (γλ,m* and E0 of the magnetopolaron is obvious.

     

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