Self-formed $LaAlO_3/SrTiO_3$ Micro-Membranes
Alessia Sambri, Mario Scuderi, Anita Guarino, Emiliano Di Gennaro,, Ricci Erlandsen, Rasmus T. Dahm, Anders V. Bj{\o}rlig, Dennis V. Christensen,, Roberto Di Capua, Bartolomeo Della Ventura, Umberto Scotti di Uccio,, Salvatore Mirabella, Giuseppe Nicotra, Corrado Spinella

TL;DR
This paper introduces a novel strain-engineering method to create freestanding LaAlO3/SrTiO3 oxide hetero-membranes with micrometer dimensions, enabling new electronic device functionalities and integration with semiconductor technology.
Contribution
The authors demonstrate a sacrificial-layer-free technique for forming fully epitaxial oxide hetero-membranes via strain relaxation, advancing the fabrication of freestanding oxide electronic components.
Findings
Membranes are fully epitaxial with a significant strain gradient.
Membranes exhibit metallic conductivity and field-effect similar to 2D electron systems.
The method enables integration of oxide functionalities into semiconductor electronics.
Abstract
Oxide heterostructures represent a unique playground for triggering the emergence of novel electronic states and for implementing new device concepts. The discovery of 2D conductivity at the interface has been linking for over a decade two of the major current research fields in Materials Science: correlated transition-metal-oxide systems and low-dimensional systems. A full merging of these two fields requires nevertheless the realization of heterostructures in the form of freestanding membranes. Here we show a completely new method for obtaining oxide hetero-membranes with micrometer lateral dimensions. Unlike traditional thin-film-based techniques developed for semiconductors and recently extended to oxides, the concept we demonstrate does not rely on any sacrificial layer and is based instead on pure strain engineering. We monitor through both…
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