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volume 11 issue 1 publication number 697

Polarization control of THz emission using spin-reorientation transition in spintronic heterostructure

Publication typeJournal Article
Publication date2021-01-12
scimago Q1
wos Q1
SJR0.874
CiteScore6.7
Impact factor3.9
ISSN20452322
Multidisciplinary
Abstract

Polarization of electromagnetic waves plays an extremely important role in interaction of radiation with matter. In particular, interaction of polarized waves with ordered matter strongly depends on orientation and symmetry of vibrations of chemical bonds in crystals. In quantum technologies, the polarization of photons is considered as a “degree of freedom”, which is one of the main parameters that ensure efficient quantum computing. However, even for visible light, polarization control is in most cases separated from light emission. In this paper, we report on a new type of polarization control, implemented directly in a spintronic terahertz emitter. The principle of control, realized by a weak magnetic field at room temperature, is based on a spin-reorientation transition (SRT) in an intermetallic heterostructure TbCo2/FeCo with uniaxial in-plane magnetic anisotropy. SRT is implemented under magnetic field of variable strength but of a fixed direction, orthogonal to the easy magnetization axis. Variation of the magnetic field strength in the angular (canted) phase of the SRT causes magnetization rotation without changing its magnitude. The charge current excited by the spin-to-charge conversion is orthogonal to the magnetization. As a result, THz polarization rotates synchronously with magnetization when magnetic field strength changes. Importantly, the radiation intensity does not change in this case. Control of polarization by SRT is applicable regardless of the spintronic mechanism of the THz emission, provided that the polarization direction is determined by the magnetic moment orientation. The results obtained open the prospect for the development of the SRT approach for THz emission control.

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GOST Copy
Khusyainov D. et al. Polarization control of THz emission using spin-reorientation transition in spintronic heterostructure // Scientific Reports. 2021. Vol. 11. No. 1. 697
GOST all authors (up to 50) Copy
Khusyainov D., Ovcharenko S., Gaponov M., Buryakov A., Klimov A., Tiercelin N., Pernod P., Nozdrin V., Mishina E., SIGOV A., Preobrazhensky V. Polarization control of THz emission using spin-reorientation transition in spintronic heterostructure // Scientific Reports. 2021. Vol. 11. No. 1. 697
RIS |
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RIS Copy
TY - JOUR
DO - 10.1038/s41598-020-80781-5
UR - https://doi.org/10.1038/s41598-020-80781-5
TI - Polarization control of THz emission using spin-reorientation transition in spintronic heterostructure
T2 - Scientific Reports
AU - Khusyainov, Dinar
AU - Ovcharenko, Sergei
AU - Gaponov, Mikhail
AU - Buryakov, Arseniy
AU - Klimov, Alexey
AU - Tiercelin, Nicolas
AU - Pernod, Philippe
AU - Nozdrin, Vadim
AU - Mishina, Elena
AU - SIGOV, ALEXANDER
AU - Preobrazhensky, Vladimir
PY - 2021
DA - 2021/01/12
PB - Springer Nature
IS - 1
VL - 11
PMID - 33437014
SN - 2045-2322
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Khusyainov,
author = {Dinar Khusyainov and Sergei Ovcharenko and Mikhail Gaponov and Arseniy Buryakov and Alexey Klimov and Nicolas Tiercelin and Philippe Pernod and Vadim Nozdrin and Elena Mishina and ALEXANDER SIGOV and Vladimir Preobrazhensky},
title = {Polarization control of THz emission using spin-reorientation transition in spintronic heterostructure},
journal = {Scientific Reports},
year = {2021},
volume = {11},
publisher = {Springer Nature},
month = {jan},
url = {https://doi.org/10.1038/s41598-020-80781-5},
number = {1},
pages = {697},
doi = {10.1038/s41598-020-80781-5}
}