Abstract

Among the perovskite oxide family, KTaO3 (KTO) has recently attracted considerable interest as a possible system for the realization of the Rashba effect. In this work, we report a novel conducting interface by placing KTO with another insulator, LaVO3 (LVO) and report planar Hall effect (PHE) and anisotropic magnetoresistance (AMR) measurements. This interface exhibits a signature of strong spin-orbit coupling. Our experimental observations of two fold AMR and PHE at low magnetic fields (B) is similar to those obtained for topological systems and can be intuitively understood using a phenomenological theory for a Rashba spin-split system. Our experimental data show a B2 dependence of AMR and PHE at low magnetic fields that could also be explained based on our model. At high fields (~8 T), we see a two fold to four fold transition in the AMR that could not be explained using only Rashba spin-split energy spectra.

Two dimensional electron gas (2DEG) at oxide interfaces is promising in modern electronic devices. Here, Wadehra et al. realize 2DEG at a novel interface composed of LaVO3 and KTaO3, where strong spin-orbit coupling and relativistic nature of the electrons in the 2DEG, leading to anisotropic magnetoresistance and planar Hall effect.

Details

Title
Planar Hall effect and anisotropic magnetoresistance in polar-polar interface of LaVO3-KTaO3 with strong spin-orbit coupling
Author
Wadehra Neha 1   VIAFID ORCID Logo  ; Tomar Ruchi 1 ; Varma, Rahul Mahavir 2   VIAFID ORCID Logo  ; Gopal, R K 3 ; Singh, Yogesh 3 ; Dattagupta Sushanta 4 ; Chakraverty, S 1 

 Institute of Nano Science and Technology, Nanoscale Physics and Device Laboratory, Mohali, India (GRID:grid.454775.0) (ISNI:0000 0004 0498 0157) 
 Indian Institute of Science, Solid State and Structural Chemistry Unit, Bangaluru, India (GRID:grid.34980.36) (ISNI:0000 0001 0482 5067) 
 Indian Institute of Science Education and Research Mohali, Manauli, India (GRID:grid.458435.b) (ISNI:0000 0004 0406 1521) 
 Bose Institute, Kolkata, India (GRID:grid.418423.8) (ISNI:0000 0004 1768 2239) 
Publication year
2020
Publication date
2020
Publisher
Nature Publishing Group
e-ISSN
20411723
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2354722858
Copyright
This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.