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Title: Correlated disorder-driven superconductivity in quasi-1d samples
Authors: MORAES, Luan Martins Torres de
Keywords: Física da matéria condensada e de materiais; Desordem correlacionada; Supercondutividade; Amostras quase 1D; Intensidade da desordem; Correlações espaciais
Issue Date: 31-Jul-2023
Publisher: Universidade Federal de Pernambuco
Citation: MORAES, Luan Martins Torres de. Correlated disorder-driven superconductivity in quasi-1d samples. 2023. Dissertação (Mestrado em Física) – Universidade Federal de Pernambuco, Recife, 2023.
Abstract: The recent surge of interest in the interplay between disorder and superconductivity has witnessed significant advancements in theory and experiment. While prior research mainly fo- cused on disorder strength’s impact, recent studies show disorder can remarkably enhance superconductivity. Structural disorder has led to notable improvements in superconducting characteristics, exemplified by MoSe chains with Na atoms (PETROVIC et al., 2016) and TaS2 monolayers (PENG et al., 2018). However, current disorder models lack consideration for spatial correlations, which are prevalent in real systems. Long-range correlations, as demonstrated in zero-temperature superconducting studies (NEVEROV et al., 2022), alter statistical proper- ties of the order parameter, reinforcing superconducting correlations against disorder. This dissertation explores correlated disorder’s effect on nanowire superconductivity, revealing in- tricate connections between electron density, disorder, correlations, and sample dimensions. Specifically, electron density modulates order parameter dependence on transverse dimen- sions, showing weakened quantum-size effects near the mid-band. Disorder’s influence varies with electron density; mid-band exhibits milder disorder impact than band edges. In high elec- tron density, weak correlation-dependent OP increase is noted with size reduction, contrasting the low-density regime where a strong, non-monotonic correlation-dependent increase emerges. This research emphasizes correlation’s vital role in robust superconductivity, offering tailored material design opportunities.
Description: CROITORU, Mihail D., também é conhecido em citações bibliográficas por: CROITORU, Mihail.
URI: https://repositorio.ufpe.br/handle/123456789/52023
Appears in Collections:Dissertações de Mestrado - Física

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