首页> 外文期刊>Journal of the Korean Physical Society >Effects of temperature on the ground state of a strongly-coupling magnetic polaron and mean phonon number in RbCl quantum pseudodot
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Effects of temperature on the ground state of a strongly-coupling magnetic polaron and mean phonon number in RbCl quantum pseudodot

机译:温度对RbCl量子伪点中强耦合磁极化子基态和平均声子数的影响

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摘要

On the condition of strong electron-LO phonon coupling in a RbCl quantum pseudodot (QPD), the ground state energy and the mean number of phonons are calculated by using the Pekar variational method and quantum statistical theory. The variations of the ground state energy and the mean number with respect to the temperature and the cyclotron frequency of the magnetic field are studied in detail. We find that the absolute value of the ground state energy increases (decreases) with increasing temperature when the temperature is in the lower (higher) temperature region, and that the mean number increases with increasing temperature. The absolute value of the ground state energy is a decreasing function of the cyclotron frequency of the magnetic field whereas the mean number is an increasing function of it. We find two ways to tune the ground state energy and the mean number: controlling the temperature and controlling the cyclotron frequency of the magnetic field.
机译:在RbCl量子假点(QPD)中强电子-LO声子耦合的条件下,利用Pekar变分法和量子统计理论计算基态能量和声子平均数。详细研究了基态能量和均值相对于温度和磁场的回旋频率的变化。我们发现,当温度处于较低(较高)温度区域时,基态能量的绝对值随温度升高而增加(减小),并且平均数随温度升高而增加。基态能量的绝对值是磁场回旋频率的递减函数,而平均值是其回旋频率的递增函数。我们找到两种调谐基态能量和均值的方法:控制温度和控制磁场的回旋频率。

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