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Main Authors: Papior, Andor Che, Tran, Van-Truong, D'Agosta, Roberto, Kurth, Stefan
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2603.29662
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author Papior, Andor Che
Tran, Van-Truong
D'Agosta, Roberto
Kurth, Stefan
author_facet Papior, Andor Che
Tran, Van-Truong
D'Agosta, Roberto
Kurth, Stefan
contents Mismatched junctions formed by two C$_3$N zigzag nanoribbons of different widths provide a useful setting for studying quantum interference effects involving edge state transport. A crucial ingredient for this interference to appear is, besides the presence of edge states, the formation of localized interface states at the mismatched interface of the junction. At the level of a tight-binding model it is shown that, by means of an external gate potential, one of the edge state energy bands can selectively be shifted into the energy range of the localized interface states. The resulting coupling between the edge and localized interface states gives rise to pronounced Fano resonances in both the density of states and the transmission spectrum with line shapes well described by the canonical Fano formula. Furthermore, it is found that the geometrical mismatch of the junction not only determines the number of resonances but also the energetic orientation of their asymmetric line shapes. These results identify mismatched C$_3$N nanojunctions as a tunable and robust platform for engineering interference-driven transport.
format Preprint
id arxiv_https___arxiv_org_abs_2603_29662
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Fano Resonances in Mismatched C$_3$N Nanoribbon Junctions
Papior, Andor Che
Tran, Van-Truong
D'Agosta, Roberto
Kurth, Stefan
Mesoscale and Nanoscale Physics
Mismatched junctions formed by two C$_3$N zigzag nanoribbons of different widths provide a useful setting for studying quantum interference effects involving edge state transport. A crucial ingredient for this interference to appear is, besides the presence of edge states, the formation of localized interface states at the mismatched interface of the junction. At the level of a tight-binding model it is shown that, by means of an external gate potential, one of the edge state energy bands can selectively be shifted into the energy range of the localized interface states. The resulting coupling between the edge and localized interface states gives rise to pronounced Fano resonances in both the density of states and the transmission spectrum with line shapes well described by the canonical Fano formula. Furthermore, it is found that the geometrical mismatch of the junction not only determines the number of resonances but also the energetic orientation of their asymmetric line shapes. These results identify mismatched C$_3$N nanojunctions as a tunable and robust platform for engineering interference-driven transport.
title Fano Resonances in Mismatched C$_3$N Nanoribbon Junctions
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2603.29662