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基本单元的特殊特征及其对长周期结构整体传输特性的影响。

Basic Cells Special Features and Their Influence on Global Transport Properties of Long Periodic Structures.

作者信息

Oliveira Luna R N, da Luz Marcos G E

机构信息

Departamento de Física, Universidade Federal do Paraná, Curitiba 81531-980, PR, Brazil.

出版信息

Entropy (Basel). 2024 Nov 3;26(11):942. doi: 10.3390/e26110942.

Abstract

In this contribution, we address quantum transport in long periodic arrays whose basic cells, localized potentials U(x), display certain particular features. We investigate under which conditions these "local" special characteristics can influence the tunneling behavior through the full structure. As the building blocks, we consider two types of U(x)s: combinations of either Pöschl-Teller, U0/cosh2[αx], potentials (for which the reflection and transmission coefficients are known analytically) or Gaussian-shaped potentials. For the latter, we employ an improved potential slicing procedure using basic barriers, like rectangular, triangular and trapezoidal, to approximate U(x) and thus obtain its scattering amplitudes. By means of a recently derived method, we discuss scattering along lattices composed of a number, , of these U(x)s. We find that near-resonance energies of an isolated U(x) do impact the corresponding energy bands in the limit of very large s, but only when the cell is spatially asymmetric. Then, there is a very narrow opening (defect or rip) in the system conduction quasi-band, corresponding to the energy of the U(x) quasi-state. Also, for specific U0's of a single Pöschl-Teller well, one has 100% transmission for any incident E>0. For the U(x) parameters rather close to such a condition, the associated array leads to a kind of "reflection comb" for large s; |TN(k)|2 is not close to one only at very specific values of , when |TN|2≈0. Finally, the examples here-illustrating how the anomalous transport comportment in finite but long lattices can be inherited from certain singular aspects of the U(x)s-are briefly discussed in the context of known effects in the literature, notably for lattices with asymmetric cells.

摘要

在本论文中,我们研究长周期阵列中的量子输运问题,其基本单元的局域势U(x)具有某些特殊性质。我们探讨在何种条件下这些“局域”特殊性质会影响通过整个结构的隧穿行为。作为构建单元,我们考虑两种类型的U(x):普施尔 - 特勒势U0/cosh2[αx]的组合(其反射和透射系数可通过解析方法得到)或高斯型势。对于后者,我们采用一种改进的势切片方法,利用诸如矩形、三角形和梯形等基本势垒来近似U(x),从而得到其散射振幅。通过一种最近推导的方法,我们讨论沿由多个此类U(x)组成的晶格的散射。我们发现,在非常大的s极限下,孤立U(x)的近共振能量确实会影响相应的能带,但仅当单元在空间上不对称时才会如此。此时,系统传导准带中会出现一个非常窄的开口(缺陷或裂缝),对应于U(x)准态的能量。此外,对于单个普施尔 - 特勒势阱的特定U0值,对于任何入射能量E>0,透射率为100%。对于非常接近这种条件的U(x)参数,相关阵列在大s时会导致一种“反射梳状”现象;|TN(k)|2仅在非常特定的s值处不接近1,此时|TN|2≈0。最后,本文通过实例说明了有限但长的晶格中的反常输运行为如何从U(x)的某些奇异方面继承而来,并在文献中已知效应的背景下进行了简要讨论,特别是对于具有不对称单元的晶格。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2b6/11592873/d7b1a32af9dd/entropy-26-00942-g0A1.jpg

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