An infinite grid of mesoscopic resistors: investigation and visualization of ballistic conduction

Fuente: arXiv
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Autore principale: Urbański, Oliwier
Natura: Preprint
Pubblicazione: 2025
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author Urbański, Oliwier
author_facet Urbański, Oliwier
contents A square lattice of mesoscopic resistors is considered. Each bond is modeled as a narrow waveguide, while junctions are sources of elastic scattering given by a scattering matrix \mathbf{S}. Symmetry and unitarity constraints are used in a detailed way to simplify all possible matrices \mathbf{S}. Energetic band structure of the system is determined and visualized for exemplary parameters. Conductance between external electrodes attached to two arbitrary nodes is given by the Landauer formula. Thus the transmittance between the electrodes is calculated. The rest of the paper is devoted to studying wave function patterns arising from an electron injected through one electrode into the system. It is observed that depending on its energy both dull and localized or intricate and expansive patterns occur. It is justified mathematically that fitting electron energy into an energy band can be associated with emergence of complex patterns. Finally, possible experimental realizations of the considered model are briefly mentioned.
format Preprint
id arxiv_https___arxiv_org_abs_2505_10722
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle An infinite grid of mesoscopic resistors: investigation and visualization of ballistic conduction
Urbański, Oliwier
Mesoscale and Nanoscale Physics
A square lattice of mesoscopic resistors is considered. Each bond is modeled as a narrow waveguide, while junctions are sources of elastic scattering given by a scattering matrix \mathbf{S}. Symmetry and unitarity constraints are used in a detailed way to simplify all possible matrices \mathbf{S}. Energetic band structure of the system is determined and visualized for exemplary parameters. Conductance between external electrodes attached to two arbitrary nodes is given by the Landauer formula. Thus the transmittance between the electrodes is calculated. The rest of the paper is devoted to studying wave function patterns arising from an electron injected through one electrode into the system. It is observed that depending on its energy both dull and localized or intricate and expansive patterns occur. It is justified mathematically that fitting electron energy into an energy band can be associated with emergence of complex patterns. Finally, possible experimental realizations of the considered model are briefly mentioned.
title An infinite grid of mesoscopic resistors: investigation and visualization of ballistic conduction
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2505.10722