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Observation of polar vortices in oxide superlattices
A. K. Yadav
,
C. T. Nelson
, S. L. Hsu
, Z. Hong
, J. D. Clarkson
, C. M. Schlepuëtz
, A. R. Damodaran
, P. Shafer
, E. Arenholz
, L. R. Dedon
, D. Chen
, A. Vishwanath
, A. M. Minor
, L. Q. Chen
, J. F. Scott
, L. W. Martin
, R. Ramesh
Research output
:
Contribution to journal
›
Article
›
peer-review
870
Scopus citations
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Engineering
Vortex
100%
Superlattice
100%
Titanate
80%
Degree of Freedom
40%
Nanometre
20%
Phase Field
20%
Rotational
20%
Band Structure
20%
Elastic Energy
20%
Lower Energy State
20%
Polarization Rotation
20%
Domain Formation
20%
Physical Phenomena
20%
Material Science
Superlattice
100%
Vortex
100%
Oxide Compound
100%
Titanate
80%
Strontium
40%
Scanning Transmission Electron Microscopy
20%
Electronic Band Structure
20%
Chirality
20%
Physics
Titanates
100%
Superlattice
100%
Degree of Freedom
50%
Spin-Orbit Coupling
25%
Electrostatics
25%
State of Matter
25%
Transmission Electron Microscopy
25%
Physical Phenomena
25%
Chirality
25%