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Electric Field Control of Chirality

Authors :
Behera, Piush
May, Molly A.
Gómez-Ortiz, Fernando
Susarla, Sandhya
Das, Sujit
Nelson, Christopher T.
Caretta, Lucas
Hsu, Shang-Lin
McCarter, Margaret R.
Savitzky, Benjamin H.
Barnard, Edward S.
Raja, Archana
Hong, Zijian
García-Fernandez, Pablo
Lovesey, Stephen W.
van der Laan, Gerrit
Ophus, Colin
Martin, Lane W.
Junquera, Javier
Raschke, Markus B.
Ramesh, Ramamoorthy
Publication Year :
2021

Abstract

Polar textures have attracted significant attention in recent years as a promising analog to spin-based textures in ferromagnets. Here, using optical second harmonic generation based circular dichroism, we demonstrate deterministic and reversible control of chirality over mesoscale regions in ferroelectric vortices using an applied electric field. The microscopic origins of the chirality, the pathway during the switching, and the mechanism for electric-field control are described theoretically via phase-field modeling and second-principles simulations, and experimentally by examination of the microscopic response of the vortices under an applied field. The emergence of chirality from the combination of non-chiral materials and subsequent control of the handedness with an electric field has far-reaching implications for new electronics based on chirality as a field controllable order parameter.<br />Comment: 19 pages, 4 figures Supplement: 27 pages, 13 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2105.14109
Document Type :
Working Paper