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Our aim is to explore novel spin-related effects with extremely high efficiency in condensed matters. We thus contributes to development of spintronics, a technology using spin as well as charge of electrons, and to realization of ultrafast and high-density information technology with low energy consumption. Our particular interest is at present in a strong quantum relativistic effect in solids, which is applicable to very strong magnets and efficient conversion of spin information to an electric signal. Our main method is a field theory.
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Physics Letters App.129333, (2024)
Scientific reportsno. 1 (2023): 21153-21153
PHYSICAL REVIEW Bno. 21 (2022): 1-2
arXiv (Cornell University)no. 13 (2022)
Reference Module in Materials Science and Materials Engineeringpp.143-146, (2022)
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