4.6 Article

Flexoelectricity and ferroelectric domain wall structures: Phase-field modeling and DFT calculations

期刊

PHYSICAL REVIEW B
卷 89, 期 17, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.89.174111

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资金

  1. U S National Science Foundation (NSF) [DMR-0820404, DMR-1006541, DMR-1210588]
  2. instrumentation (CyberSTAR Linux cluster) - NSF [OCI-0821527]
  3. State Fund of Fundamental Research of Ukraine (SFFR)-NSF project [NSF-DMR-1210588, UU48/002]
  4. Division Of Materials Research
  5. Direct For Mathematical & Physical Scien [1006541] Funding Source: National Science Foundation
  6. Division Of Materials Research
  7. Direct For Mathematical & Physical Scien [1210588] Funding Source: National Science Foundation

向作者/读者索取更多资源

We show that flexoelectric effect is responsible for the non-Ising character of a 180 degrees ferroelectric domain wall. The wall, long considered being of Ising type, contains both Bloch-and Neel-type polarization components. Using the example of classic ferroelectric BaTiO3, and by incorporating the flexoelectric effect into a phase-field model, it is demonstrated that the flexoelectric effect arising from stress inhomogeneity around the domain wall leads to the additional Bloch and Neel polarization components. The magnitudes of these additional components are two or three magnitudes smaller than the Ising component, and they are determined by the competing depolarization and flexoelectric fields. Our results from phase-field model are consistent with the atomistic scale calculations. The results prove the critical role of flexoelectricity in defining the internal structure of ferroelectric domain walls.

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