论文标题

部分可观测时空混沌系统的无模型预测

Quantum shape oscillations in the thermodynamic properties of confined electrons in core-shell nanostructures

论文作者

Aydin, Alhun, Fransson, Jonas, Sisman, Altug

论文摘要

量子形状效应出现在强限制结构的大小不变形状转换下。这种转化对受限颗粒的热力学特性有明显的影响。由于它们的特征几何形状,核心壳纳米结构是观察到量子形状效应的良好候选物。在这里,我们研究了由核心壳纳米线限制的非相互作用退化电子的热力学特性,该电子由绝缘芯和GAAS半导体壳组成。我们得出了形状依赖性热力学量的表达,并显示了由于形状依赖性,化学势,内部能量,熵和受限电子的特定热而导致的新型量子振荡的存在。我们通过调用量子边界层概念并评估FERMI功能和状态空间中量化能量水平的分布来提供对结果的物理理解。除了密度,温度和尺寸外,形状本身还成为受封闭电子的费米能量上的控制参数,该参数提供了一种新的机制来微调费米水平并改变半导体的极性。

Quantum shape effect appears under the size-invariant shape transformations of strongly confined structures. Such a transformation distinctively influences the thermodynamic properties of confined particles. Due to their characteristic geometry, core-shell nanostructures are good candidates for quantum shape effects to be observed. Here we investigate the thermodynamic properties of non-interacting degenerate electrons confined in core-shell nanowires consisting of an insulating core and a GaAs semiconducting shell. We derive the expressions of shape-dependent thermodynamic quantities and show the existence of a new type of quantum oscillations due to shape dependence, in chemical potential, internal energy, entropy and specific heat of confined electrons. We provide physical understanding of our results by invoking the quantum boundary layer concept and evaluating the distributions of quantized energy levels on Fermi function and in state space. Besides the density, temperature and size, the shape per se also becomes a control parameter on the Fermi energy of confined electrons, which provides a new mechanism for fine tuning the Fermi level and changing the polarity of semiconductors.

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