arXiv · 1009.2265
Fermi surface of an important nano-sized metastable phase: Al$_3$Li
Abstract
Nanoscale particles embedded in a metallic matrix are of considerable interest as a route towards identifying and tailoring material properties. We present a detailed investigation of the electronic structure, and in particular the Fermi surface, of a nanoscale phase ($L1_2$ Al$_3$Li) that has so far been inaccessible with conventional techniques, despite playing a key role in determining the favorable material properties of the alloy (Al\nobreakdash-9 at. %\nobreakdash-Li). The ordered precipitates only form within the stabilizing Al matrix and do not exist in the bulk; here, we take advantage of the strong positron affinity of Li to directly probe the Fermi surface of Al$_3$Li. Through comparison with band structure calculations, we demonstrate that the positron uniquely probes these precipitates, and present a 'tuned' Fermi surface for this elusive phase.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
J. Laverock, S. B. Dugdale, M. A. Alam, M. V. Roussenova, J. Wensley, J. Kwiatkowska, N. Shiotani. 2010-09-12. Fermi surface of an important nano-sized metastable phase: Al$_3$Li. https://doi.org/10.1103/physrevlett.105.236401
Cite the original work for its findings. Save a collection to share your selection of sources.