Emergent chirality in a polar meron to skyrmion phase transition

Author:

Shao Yu-TsunORCID,Das SujitORCID,Hong Zijian,Xu RuijuanORCID,Chandrika Swathi,Gómez-Ortiz FernandoORCID,García-Fernández PabloORCID,Chen Long-QingORCID,Hwang Harold Y.ORCID,Junquera JavierORCID,Martin Lane W.ORCID,Ramesh RamamoorthyORCID,Muller David A.ORCID

Abstract

AbstractPolar skyrmions are predicted to emerge from the interplay of elastic, electrostatic and gradient energies, in contrast to the key role of the anti-symmetric Dzyalozhinskii-Moriya interaction in magnetic skyrmions. Here, we explore the reversible transition from a skyrmion state (topological charge of −1) to a two-dimensional, tetratic lattice of merons (with topological charge of −1/2) upon varying the temperature and elastic boundary conditions in [(PbTiO3)16/(SrTiO3)16]8 membranes. This topological phase transition is accompanied by a change in chirality, from zero-net chirality (in meronic phase) to net-handedness (in skyrmionic phase). We show how scanning electron diffraction provides a robust measure of the local polarization simultaneously with the strain state at sub-nm resolution, while also directly mapping the chirality of each skyrmion. Using this, we demonstrate strain as a crucial order parameter to drive isotropic-to-anisotropic structural transitions of chiral polar skyrmions to non-chiral merons, validated with X-ray reciprocal space mapping and phase-field simulations.

Funder

United States Department of Defense | United States Air Force | AFMC | Air Force Office of Scientific Research

United States Department of Defense | United States Army | U.S. Army Research, Development and Engineering Command | Army Research Office

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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