Publicación: Role of entropy in the ground state formation of frustrated systems
Cargando...
Archivos
Fecha
Tipo de recurso
ARTÍCULO CIENTÍFICO
Autores
Responsable institucional (informe)
Compilador
Diseñador
Contacto (informe)
Promotor
Titular
Inventor
Tutor de tesis
Solicitante
Afiliación
Fil.: Sereni, J. G. Comisión Nacional de Energía Atómica. Instituto Balseiro. Laboratorio de Bajas Temperaturas; Argentina
Sede CNEA
Centro Atómico Bariloche
Fecha de publicación
Fecha de creación
Idioma
eng
Nivel de accesibilidad
Resumen
The absence of magnetic order in Rare Earth-based frustrated compounds allows to recognize the action of the third law of thermodynamics in the low temperature behavior of those systems. One of the most relevant findings is the appearance of a coincident specific heat Cm/TIT→0≈ 7 J/molK0 2 ‘plateau’ in six Yb systems. This characteristic feature occurs after a systematic modification of the thermal trajectory of their entropies Sm (T) in the range of a few hundred milikelvin degrees. Such behavior is explained by the formation of an entropy-bottleneck imposed by the third law constraint (Sm|T→0≥0), that drives the system into alternative ground states. Based in these finding, three possible approaches to the Sm|T→0 limit observed in real systems are analyzed in terms of the ∂2SM/∂T2 dependencies.
Descripción
Palabras clave
Citación
Physica B: Condensed Matter. Vol. 536, no. (2018), p. 397-400