Metals
(Oct 2022)
Controlled Spintronic Emitter of THz Radiation on an Atomically Thin WS<sub>2</sub>/Silicon Substrate
Arseniy Buryakov,
Anastasia Gorbatova,
Pavel Avdeev,
Nikita Bezvikonnyi,
Daniil Abdulaev,
Alexey Klimov,
Sergei Ovcharenko,
Elena Mishina
Affiliations
Arseniy Buryakov
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
Anastasia Gorbatova
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
Pavel Avdeev
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
Nikita Bezvikonnyi
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
Daniil Abdulaev
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
Alexey Klimov
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
Sergei Ovcharenko
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
Elena Mishina
Laboratory of Femtosecond Optics for Nanotechnology, Department of Nanoelectronics, MIREA—Russian Technological University, 119454 Moscow, Russia
DOI
https://doi.org/10.3390/met12101676
Journal volume & issue
Vol. 12,
no. 10
p.
1676
Abstract
Read online
The control and monitoring of the polarization of terahertz radiation are of interest for numerous applications. Here we present a simple controllable THz emitter with a small coercive magnetic field. It is based on a Co/WS2/silicon structure, in which the presence of uniaxial magnetic anisotropy caused by mechanical stress in a ferromagnetic film was found. Our results show that a ferromagnet/semiconductor emitter can become a technologically simple device for terahertz spintronics.
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