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Park, Hyeong‐Ryeol
Laboratory for Ultrafast & Nanoscale Plasmonics
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Electromagnon with Sensitive Terahertz Magnetochromism in a Room-Temperature Magnetoelectric Hexaferrite

Author(s)
Chun, Sae HwanShin, Kwang WooKim, Hyung JoonJung, SeonghoonPark, JaehunBahk, Young-MiPark, Hyeong-RyeolKyoung, JisooChoi, Da-HyeKim, Dai-SikPark, Gun-SikMitchell, J. F.Kim, Kee Hoon
Issued Date
2018-01
DOI
10.1103/PhysRevLett.120.027202
URI
https://scholarworks.unist.ac.kr/handle/201301/26362
Fulltext
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.120.027202
Citation
PHYSICAL REVIEW LETTERS, v.120, no.2, pp.027202
Abstract
An electromagnon in the magnetoelectric (ME) hexaferrite Ba-0.5 Sr-2.5 Co-2 Fe-24 O-41 (Co-2 Z-type) single crystal is identified by time-domain terahertz (THz) spectroscopy. The associated THz resonance is active on the electric field (E-omega) of the THz light parallel to the c axis (parallel to [001]), whose spectral weight develops at a markedly high temperature, coinciding with a transverse conical magnetic order below 410 K. The resonance frequency of 1.03 THz at 20 K changes -8.7% and +5.8% under external magnetic field (H) of 2 kOe along [001] and [120], respectively. A model Hamiltonian describing the conical magnetic order elucidates that the dynamical ME effect arises from antiphase motion of spins which are coupled with modulating electric dipoles through the exchange striction mechanism. Moreover, the calculated frequency shift points to the key role of the Dzyaloshinskii-Moriya interaction that is altered by static electric polarization change under different H.
Publisher
AMER PHYSICAL SOC
ISSN
0031-9007
Keyword
POLARIZATIONMANGANITES

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