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Tailoring large magnetoresistance in Dirac semimetal SrIrO3 films
Ren, Z. Y.1,2; Miao, J.1; Zhang, L. P.1; Lv, Z. L.1; Cao, J. P.1; Jakob, G.2; Zhou, J.3; Chen, J. K.1; Meng, K. K.1; Li, H.4; Jing, Y.1
2021-09-13
Source PublicationAPPLIED PHYSICS LETTERS
ISSN0003-6951
Volume119Issue:11Pages:112402
Abstract

Perovskite SrIrO3 is a special Dirac material with fascinating effects due to its strong electron correlation and spin-orbit coupling. In this work, a large magnetoresistance was observed not only in epitaxial SrIrO3 films but also in a SrIrO3/PbZr0.2Ti0.8O3 epitaxial heterostructure with a magnetic field applied perpendicular to the external electric field. The magnetoresistance of SrIrO3 (10 nm) and SrIrO3/PbZr0.2Ti0.8O3 (10 nm/30 nm) reach the values as large as 40 % and 110 % at 9 T and 5 K, respectively. We believe that the unusual magnetoresistance is from the Dirac/Weyl state. Especially, the SrIrO3/PbZr0.2Ti0.8O3 bilayer shows the negative magnetoresistance with strong oscillations close to the angle positions where magnetic field is parallel to the electric field at 1.8 K, which arises from the chiral anomaly. Based on the first-principle calculations and study, the polarization field of PbZr0.2Ti0.8O3 can modulate the band structure of SrIrO3, which can modify the MR of SrIrO3. The SrIrO3/PbZr0.2Ti0.8O3 heterostructure accommodating both the ferroelectric property and the Dirac/Weyl state may open the avenue to manipulate the Dirac/Weyl properties via the electric polarization field.

KeywordMagnetoresistance Dirac Semimetal
DOI10.1063/5.0055713
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaPhysics
WOS SubjectPhysics, Applied
WOS IDWOS:000726890900009
The Source to ArticlePB_Publication
Scopus ID2-s2.0-85114962454
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Document TypeJournal article
CollectionINSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Corresponding AuthorMiao, J.
Affiliation1.Beijing Advanced Innovation Center for Materials Genome Engineering, School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083, China
2.Institute of Physics, Johannes Gutenberg University, Mainz, 55128, Germany
3.State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, 430070, China
4.Institute of Applied Physics and Materials Engineering, University of Macau, Taipa, Avenida da Universidade, 999078, Macao
Recommended Citation
GB/T 7714
Ren, Z. Y.,Miao, J.,Zhang, L. P.,et al. Tailoring large magnetoresistance in Dirac semimetal SrIrO3 films[J]. APPLIED PHYSICS LETTERS, 2021, 119(11), 112402.
APA Ren, Z. Y.., Miao, J.., Zhang, L. P.., Lv, Z. L.., Cao, J. P.., Jakob, G.., Zhou, J.., Chen, J. K.., Meng, K. K.., Li, H.., & Jing, Y. (2021). Tailoring large magnetoresistance in Dirac semimetal SrIrO3 films. APPLIED PHYSICS LETTERS, 119(11), 112402.
MLA Ren, Z. Y.,et al."Tailoring large magnetoresistance in Dirac semimetal SrIrO3 films".APPLIED PHYSICS LETTERS 119.11(2021):112402.
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