Stable humplike Hall effect and noncoplanar spin textures in SrRuO3 ultrathin films

  • Sohn, Byungmin; 
  • Kim, Bongju; 
  • Park, Se Young; 
  • Choi, Hwan Young; 
  • Moon, Jae Young; 
  • ... Chang, Seo Hyoung; 
  • 외 8명
Citations

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24

초록

We observed a humplike feature in Hall effects of SrRuO3 ultrathin films, and systematically investigated it by controlling thicknesses, temperatures and magnetic fields. The humplike feature is extremely stable, even surviving as a magnetic field is tilted by as much as 85 degrees. Based on the atomic-level structural analysis of a SrRuO3 ultrathin film with a theoretical calculation, we reveal that atomic rumplings at the thin-film surface enhance Dzyaloshinskii-Moriya interaction, which can generate stable chiral spin textures and a humplike Hall effect. Moreover, temperature dependent resonant x-ray measurements at the Ru L edge under a magnetic field showed that the intensity modulation of unexpected peaks was correlated with the hump region in the Hall effect. We verify that the two-dimensional property of ultrathin films generates stable noncoplanar spin textures having a magnetic order in a ferromagnetic oxide material.

키워드

STRUCTURAL DISTORTIONS; SKYRMION LATTICE; DOMAIN-WALLS; TRANSITION; CHIRALITY; DYNAMICS; PHASE; FIELD
제목
Stable humplike Hall effect and noncoplanar spin textures in SrRuO3 ultrathin films
저자
Sohn, Byungmin; Kim, Bongju; Park, Se Young; Choi, Hwan Young; Moon, Jae Young; Choi, Taeyang; Choi, Young Jai; Zhou, Hua; Choi, Jun Woo; Bombardi, Alessandro; Porter, Dan G.; Chang, Seo Hyoung; Han, Jung Hoon; Kim, Changyoung
DOI
10.1103/PhysRevResearch.3.023232
발행일
2021-06
유형
Article
저널명
PHYSICAL REVIEW RESEARCH
권
3
호
2

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