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Observation of magnetoconductivity with terahertz probes for ferromagnetic Fe films

Author(s)
Huang, LinZhao, YunxiuLe Thi, NguyenLee, Sang-HyukPeng, ZhiKim, SeongheunShin, Hee JunPark, JaehunKim, Hyun-JoongHong, Jung-IlBang, JunhyeokLee, Hyun SeokKim, Kyung WanKim, Dong-Hyun
Issued Date
2022-09
DOI
10.1016/j.cap.2022.06.014
URI
https://scholarworks.unist.ac.kr/handle/201301/59535
Citation
CURRENT APPLIED PHYSICS, v.41, pp.81 - 85
Abstract
Ultrafast characterization of spin-dependent transport behavior in ferromagnetic systems without contact probes has been of strong demand, recently. We have experimentally investigated spin-dependent complex conductivity for ferromagnetic Fe films of various thickness by means of terahertz time-domain transmission spectroscopy. Comparison of the transmitted terahertz wave amplitude and the spin-dependent conductivity reveals that the magnetization state of films effectively determines the complex conductivity. Non-invasive observation of spin -dependent conductivity by contact-free terahertz probe method is proven to be promising in further investigating spintronic materials, particularly on an ultrafast timescale.
Publisher
ELSEVIER
ISSN
1567-1739
Keyword (Author)
MagnetotransportTerahertztime-domainspectroscopySpin-dependentconductivityDrudemodel
Keyword
TRANSPORT-PROPERTIESCARRIER-DYNAMICS

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