Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Tuning the competition between ferromagnetism and antiferromagnetism in a half-doped manganite through magnetoelectric coupling

Journal Article · · Physical Review Letters
 [1];  [2];  [3];  [4];  [5];  [6];  [7];  [4];  [8]
  1. University of California
  2. University of California, Berkeley & LBNL
  3. ORNL
  4. Lawrence Berkeley National Laboratory (LBNL)
  5. National Cheng Kung University, Tainan, Taiwan
  6. Tsinghua University
  7. National Chiao Tung University, Hsinchu, Taiwan
  8. University of California, Berkeley
We investigate the possibility of controlling the magnetic phase transition of the heterointerface between a half-doped manganite La0:5Ca0:5MnO3 and a multiferroic BiFeO3 (BFO) through magnetoelectric coupling. Using macroscopic magnetometry and element-selective x-ray magnetic circular dichroism at the Mn and Fe L edges, we discover that the ferroelectric polarization of BFO controls simultaneously the magnetization of BFO and La0.5Ca0.5MnO3 (LCMO). X-ray absorption spectra at the oxygen K edge and linear dichroism at the Mn L edge suggest that the interfacial coupling is mainly derived from the superexchange between Mn and Fe t2g spins. The combination of x-ray absorption spectroscopy and mean-field theory calculations reveals that the d-electron modulation of Mn cations changes the magnetic coupling in LCMO, which controls the enhanced canted moments of interfacial BFO via the interfacial coupling. Our results demonstrate that the competition between ferromagnetic and antiferromagnetic instability can be modulated by an electric field at the heterointerface, providing another pathway for the electrical field control of magnetism.
Research Organization:
Oak Ridge National Laboratory (ORNL)
Sponsoring Organization:
SC USDOE - Office of Science (SC)
DOE Contract Number:
AC05-00OR22725
OSTI ID:
1093742
Journal Information:
Physical Review Letters, Journal Name: Physical Review Letters Journal Issue: 12 Vol. 111; ISSN 0031-9007
Country of Publication:
United States
Language:
English

Similar Records

Magnetoelectric coupling at the interface of BiFeO3/La0.7Sr0.3MnO3 multilayers
Journal Article · Fri Dec 31 23:00:00 EST 2010 · Physical Review B · OSTI ID:1027437

Orbital Hybridization and Magnetic Coupling at Cuprate–Manganite Interfaces Driven by Manganite Doping
Journal Article · Tue May 05 20:00:00 EDT 2020 · Advanced Quantum Technologies · OSTI ID:1677670

Controlling magnetoelectric coupling by nanoscale phase transformation instrain engineered bismuth ferrite
Journal Article · Sat Dec 31 23:00:00 EST 2011 · Nanoscale · OSTI ID:1041088