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Strain-tunable magnetism at oxide domain walls
D. V. Christensen
, Y. Frenkel
, Y. Z. Chen
, Y. W. Xie
, Z. Y. Chen
, Y. Hikita
, A. Smith
,
L. Klein
, H. Y. Hwang
, N. Pryds
,
B. Kalisky
Department of Physics - at Bar-Ilan University
Technical University of Denmark
SLAC National Accelerator Laboratory
Stanford University
Zhejiang University
Research output
:
Contribution to journal
›
Article
›
peer-review
83
Scopus citations
Overview
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Keyphrases
Oxides
100%
Domain Walls
100%
Tunable Magnetism
100%
SrTiO3
60%
Ferroelectric Domain Walls
40%
Superconducting Quantum Interference Device (SQUID)
20%
Magnetism
20%
Enhanced Conductivity
20%
Heterointerface
20%
Magnetic Properties
20%
Magnetotransport Measurements
20%
External Force
20%
Itinerant Electron
20%
Magnetic States
20%
Nanoelectronics
20%
Antiferromagnetic Order
20%
Nanoscale Devices
20%
Ferroelastic Domains
20%
Ferroelastic
20%
Nonlinear Strain
20%
Strain Response
20%
Stripe Pattern
20%
Ferroelectric Order
20%
Conducting Interfaces
20%
Wall Display
20%
Tunable Polarity
20%
Flexible Ferroelectrics
20%
Ferroelastic Materials
20%
Device-independent
20%
Long-range Magnetic Order
20%
Material Science
Magnetism
100%
Domain Wall
100%
Oxide Compound
100%
SQUID (Device)
14%
Ferroelectric Material
14%
Magnetic Property
14%