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首页> 外文期刊>Superlattices and microstructures >The effects of polaronic mass and conduction band non-parabolicity on a donor binding energy under the simultaneous effect of pressure and temperature basing on the numerical FEM in a spherical quantum dot
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The effects of polaronic mass and conduction band non-parabolicity on a donor binding energy under the simultaneous effect of pressure and temperature basing on the numerical FEM in a spherical quantum dot

机译:球形量子点中数值有限元法在温度和压力同时作用下,极化子质量和导带非抛物线对施主结合能的影响

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摘要

Basing on the numerical Finite Element Method ¢FEM), we have investigated the influences of polaronic mass and conduction band non-parabolicity on the binding energy of the ground state of an on-center hydrogenic donor impurity in a spherical GaAs/Ga1_(_x)Al_xA_s quantum dot structure. The calculations have been made with a realistic potential barrier height in the framework of the effective mass approximation including the combined effect of hydrostatic pressure and temperature. The donor binding energy is computed as a function of dot size, A1 concentration x, hydrostatic pressure and temperature both in the absence and presence of polaronic mass and conduction band non-parabolicity effects. We have taken into account the electronic effective mass, dielectric constant, and conduction band offset between the dot and barriers varying with pressure and temperature. It has been found that the binding energy is strongly affected by the effect of polaronic mass and conduction band non-parabolicity for narrow quantum dot and large A1 concentration x. The results show again that the donor binding energy increases linearly with the pressure in direct gap regime and its variation is larger for narrower dots only and drops slightly with the temperature. A good agreement is obtained with the existing literature values.
机译:基于数值有限元方法,我们研究了极化子质量和导带非抛物线形对球形GaAs / Ga1 _(_ x)中心氢供体杂质基态结合能的影响。 Al_xA_s量子点结构。在有效质量近似的框架内,包括静水压力和温度的综合影响,在实际势垒高度的基础上进行了计算。在不存在和存在极化子质量和导带非抛物线效应的情况下,将供体结合能计算为点大小,Al浓度x,静水压力和温度的函数。我们已经考虑到电子有效质量,介电常数以及点和势垒之间的导带偏移随压力和温度的变化而变化。已经发现,对于窄量子点和大Al浓度x,极化能质量和导带非抛物线效应强烈地影响结合能。结果再次表明,在直接间隙条件下,供体结合能随压力线性增加,仅在较窄的点上其变化较大,而随温度略有下降。与现有的文献资料可以很好地达成共识。

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