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Magnetization dynamics and frustration in the multiferroic double perovskite Lu2MnCoO6

Abstract:
We investigate the magnetic ordering and the magnetization dynamics (from kHz to THz time scales) of the double perovskite Lu2MnCoO6 using elastic neutron diffraction, muon spin relaxation, and micro-Hall magnetization measurements. This compound is known to be a type II multiferroic with the interesting feature that a ferromagneticlike magnetization hysteresis loop couples to an equally hysteretic electric polarization in the bulk of the material despite a zero-field magnetic ordering of the type ↑↑↓↓ along Co-Mn spin chains. Here we explore the unusual dynamics of this compound and find extremely strong fluctuations, consistent with the axial next-nearest-neighbor Ising (ANNNI) model for frustrated spin chains. We identify three temperature scales in Lu2MnCoO6 corresponding to the onset of highly fluctuating long-range order below TN = 50 ± 3 K identified from neutron scattering, the onset of magnetic and electric hysteresis, with change in kHz magnetic and electric dynamics below a 30 K temperature scale, and partial freezing of ∼MHz spin fluctuations in the muon spin relaxation data below 12 ± 3 K. Our results provide a framework for understanding the multiferroic behavior of this compound and its hysteresis and dynamics.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1103/PhysRevB.93.134431

Authors




Publisher:
American Physicals Society
Journal:
Physical Review B - Condensed Matter and Materials Physics More from this journal
Volume:
93
Issue:
13
Article number:
134431
Publication date:
2016-04-29
Acceptance date:
2016-04-11
DOI:
EISSN:
1550-235X
ISSN:
1098-0121


Pubs id:
pubs:620677
UUID:
uuid:50e1528e-a7b4-4855-9f3b-217db8dc586e
Local pid:
pubs:620677
Source identifiers:
620677
Deposit date:
2016-07-05

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