Artículo
Thermal transport across a vacuum gap between two reconstructed Si-nanomembranes
Mancardo Viotti, Agustin Matias
; Bea, Edgar Alejandro
; Monastra, Alejandro Gabriel
; Carusela, María Florencia




Fecha de publicación:
06/2025
Editorial:
Elsevier Science
Revista:
Physica E
ISSN:
1386-9477
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In this work we examine the interaction energy between two reconstructed silicon nanomembranes using a density-functional-based tight-binding (DFTB) approach, focusing on its impact on thermal conductance across a nanogap. By coupling the DFTB method with a harmonic atomistic model, we calculate the vibrational modes (phonons) and the equilibration times, which are directly related to the thermal conductance. Our findings show that surface reconstruction and the relative alignment of facing dimer structures significantly influence the phononic contribution to thermal conductance. Although the harmonic model simplifies the interactions of the real system,our results agree well with previous studies, demonstrating that this model captures key aspects of phonon-mediated heat transfer. Overall, our approach provides a computationally efficient method for understanding phononic heat transfer across nanogaps, with implications for designing nanoscale thermal management systems.
Palabras clave:
Nanostructures
,
Thermal transport
,
Low dimensional systems
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(SEDE CENTRAL)
Articulos de SEDE CENTRAL
Articulos de SEDE CENTRAL
Citación
Mancardo Viotti, Agustin Matias; Bea, Edgar Alejandro; Monastra, Alejandro Gabriel; Carusela, María Florencia; Thermal transport across a vacuum gap between two reconstructed Si-nanomembranes; Elsevier Science; Physica E; 171; 116232; 6-2025; 1-9
Compartir
Altmétricas