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Magnetic Semiconductors as Materials for Spintronics

Author(s)
Telegin, AndreiSukhorukov, Yurii
Issued Date
2022-12
DOI
10.3390/magnetochemistry8120173
URI
https://scholarworks.unist.ac.kr/handle/201301/62181
Citation
MAGNETOCHEMISTRY, v.8, no.12
Abstract
From the various aspects of spintronics the review highlights the area devoted to the creation of new functional materials based on magnetic semiconductors and demonstrates both the main physical phenomena involved and the technical possibilities of creating various devices: maser, p-n diode with colossal magnetoresistance, spin valve, magnetic lens, optical modulators, spin wave amplifier, etc. Particular attention is paid to promising research directions such as ultrafast spin transport and THz spectroscopy of magnetic semiconductors. Special care has been taken to include a brief theoretical background and experimental results for the new spintronics approach employing magnetostrictive semiconductors-strain-magnetooptics. Finally, it presents top-down approaches for magnetic semiconductors. The mechano-physical methods of obtaining and features of the physical properties of high-density nanoceramics based on complex magnetic oxides are considered. The potential possibility of using these nanoceramics as an absorber of solar energy, as well as in modulators of electromagnetic radiation, is shown.
Publisher
MDPI
ISSN
2312-7481
Keyword (Author)
magnetic semiconductorscomplex magnetic oxidesferrite spinelcolossal magnetoresistancenanoceramicsmasermodulatoroptoelectronicsspintronicsthin-film structures
Keyword
ELECTRON-MAGNON INTERACTIONCOLOSSAL MAGNETORESISTANCETHIN-FILMSMAGNETOOPTICAL PROPERTIESOPTICAL-PROPERTIESVARIANT STRUCTURESPIN INJECTIONGIANT CHANGECUOMANGANITES

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