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Emergent Ferroelectric Switching Behavior from Polar Vortex Lattice

  • Piush Behera
  • , Eric Parsonnet
  • , Fernando Gómez-Ortiz
  • , Vishantak Srikrishna
  • , Peter Meisenheimer
  • , Sandhya Susarla
  • , Pravin Kavle
  • , Lucas Caretta
  • , Yongjun Wu
  • , Zishen Tian
  • , Abel Fernandez
  • , Lane W. Martin
  • , Sujit Das
  • , Javier Junquera
  • , Zijian Hong
  • , Ramamoorthy Ramesh

Research output: Contribution to journalArticlepeer-review

Abstract

Topologically protected polar textures have provided a rich playground for the exploration of novel, emergent phenomena. Recent discoveries indicate that ferroelectric vortices and skyrmions not only host properties markedly different from traditional ferroelectrics, but also that these properties can be harnessed for unique memory devices. Using a combination of capacitor-based capacitance measurements and computational models, it is demonstrated that polar vortices in dielectric–ferroelectric–dielectric trilayers exhibit classical ferroelectric bi-stability together with the existence of low-field metastable polarization states. This behavior is directly tied to the in-plane vortex ordering, and it is shown that it can be used as a new method of non-destructive readout-out of the poled state.

Original languageEnglish (US)
Article number2208367
JournalAdvanced Materials
Volume35
Issue number23
DOIs
StatePublished - Jun 8 2023
Externally publishedYes

Keywords

  • ferroelectric thin films
  • topology
  • vortex states

ASJC Scopus subject areas

  • General Materials Science
  • Mechanics of Materials
  • Mechanical Engineering

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