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首页> 外文期刊>Physica, B. Condensed Matter >Energy-loss rate of hot electrons due to confined acoustic phonon modes in a semiconductor quantum wire under transverse electric field
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Energy-loss rate of hot electrons due to confined acoustic phonon modes in a semiconductor quantum wire under transverse electric field

机译:横向电场下半导体量子丝中狭窄的声学声子模式引起的热电子的能量 - 损耗率

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摘要

The hot-electron energy-loss rate via the acoustic-phonons in an embedded semiconductor quantum wire of circular cross section in the presence of external electric field has been investigated using deformation potential theory. Dimensional confinement effect on modifying acoustic-phonon modes are taken into account. The energy-loss rate as a function of electric field strength, electron density and electron temperature is obtained. Our calculations show that the electric field applied perpendicularly to the wire axis can be used as an important tool for the control of the energy-loss processes in nanowires.
机译:使用变形电位理论研究了在存在外部电场存在的圆形横截面中的嵌入半导体量子线中的热电子能量损耗速率。 考虑了修改声学模式的尺寸限制效果。 获得作为电场强度,电子密度和电子温度的函数的能量损耗率。 我们的计算表明,垂直于线轴施加的电场可以用作控制纳米线中的能量损耗过程的重要工具。

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