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- W4309830390 abstract "We investigate the localization of low-energy single quasiparticle states in 7/9- and 13/15-hybrid nanoribbon systems in the presence of strong interactions and within a finite volume. We consider two scenarios, the first being the Hubbard model at half filling, and perform quantum Monte Carlo simulations for a range $U$ that includes the strongly correlated regime. In the second case, we add a nearest-neighbor superconducting pairing $mathrm{ensuremath{Delta}}$ and take the symmetric line limit, where $mathrm{ensuremath{Delta}}$ is equal in magnitude to the hopping parameter $t$. In this limit, the quasiparticle spectrum and wave functions can be directly solved for general on-site interaction $U$. In both cases, we extract the site-dependent quasiparticle wave-function densities and demonstrate that localization persists in these nonperturbative regimes under particular scenarios. Our findings suggest that such localization under the presence of interactions and within a finite volume is a generic feature of hybrid nanoribbons composed of topologically distinct regions." @default.
- W4309830390 created "2022-11-29" @default.
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- W4309830390 date "2022-11-23" @default.
- W4309830390 modified "2023-10-14" @default.
- W4309830390 title "Localization of electronic states in hybrid nanoribbons in the nonperturbative regime" @default.
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- W4309830390 doi "https://doi.org/10.1103/physrevb.106.195422" @default.
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