Fabrication and Low-Temperature Transport Studies of LaAlO<sub>3</sub>/SrTiO<sub>3</sub> Micro-Membranes for Silicon-Integrated Nanoelectronics
ORAL
Abstract
Freestanding oxide micro-membranes offer an interesting new platform for exploring functionalities of the electron system and for integrating oxide electronics with silicon-based architectures. Recent developments in fabrication of self-formed LaAlO3/SrTiO3 (LAO/STO) heterostructure micro-membranes by spalling [1] have demonstrated metallic conductivity and the emergence of a superconducting phase at ultra-low temperatures [2]. Here we present an extended fabrication process for high-yield [3] LAO/STO micro-membrane devices on silicon, where we develop and optimize contacts to spalled micro-membranes and discuss the possibilities for integrating local electrostatic top and botton gates. At low temperatures, the micro-membranes exhibit a two-dimensional superconducting phase, confirmed through magneto-transport measurements. These results highlight the potential of spalled LAO/STO micro-membranes for integrating oxide nanoelectronics with silicon technologies and shed light on the properties of the interface electron system.
*This work is financed by the Horizon Europe EIC Pathfinder under the grant IQARO number 101115190 titled "Spin-orbitronic quantum bits in reconfigurable 2D-oxides"
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Publication:1. Self-Formed, Conducting LaAlO3/SrTiO3 Micro-Membranes A. Sambri, M. Scuderi, A. Guarino, E. DiGennaro, R. Erlandsen, R. T. Dahm, A. V. Bjørlig, D. V. Christensen, R. DiCapua, B. DellaVentura, U. Scotti diUccio, S. Mirabella, G. Nicotra, C. Spinella, T. S. Jespersen, F. Miletto Granozio Adv. Funct. Mater. 2020, 30, 1909964. DOI: 10.1002/adfm.201909964
2. Size-Controlled Spalling of LaAlO3/SrTiO3 Micromembranes Rasmus T. Dahm, Ricci Erlandsen, Felix Trier, Alessia Sambri, Emiliano Di Gennaro, Anita Guarino, Lukas Stampfer, Dennis V. Christensen, Fabio Miletto Granozio, and Thomas S. Jespersen ACS Applied Materials & Interfaces 2021 13 (10), 12341-12346 DOI: 10.1021/acsami.0c21612
3. A Two-Dimensional Superconducting Electron Gas in Freestanding LaAlO3/SrTiO3 Micromembranes Ricci Erlandsen, Rasmus Tindal Dahm, Felix Trier, Mario Scuderi, Emiliano Di Gennaro, Alessia Sambri, Charline Kaisa Reffeldt Kirchert, Nini Pryds, Fabio Miletto Granozio, and Thomas Sand Jespersen Nano Letters 2022 22 (12), 4758-4764 DOI: 10.1021/acs.nanolett.2c00992
Presenters
Gunjan Nagda
Department of Energy Conversion and Storage, Danish Technical University
Technical University of Denmark
Authors
Gunjan Nagda
Department of Energy Conversion and Storage, Danish Technical University
Technical University of Denmark
Pinelopi Konstantinopoulou
Department of Energy Conversion and Storage, Danish Technical University
Damon J Carrad
Technical University of Denmark
Department of Energy Conversion and Storage, Danish Technical University
Alessia Sambri
CNR - SPIN University of Napoli Federico II
Fabio M Granozio
CNR - SPIN University of Napoli Federico II
Felix Trier
Tech Univ of Denmark
Department of Energy Conversion and Storage, Danish Technical University
Nini Pryds
Tech Univ of Denmark
Department of Energy Conversion and Storage, Danish Technical University
Thomas S Jespersen
Denmarks Technical University
Technical University of Denmark
Department of Energy Conversion and Storage, Danish Technical University
Technical University of Denmark AND Niels Bohr Insitute