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- W2756557465 abstract "The spin-resolved electron transport through a triangular network of quantum nanorings is studied in the presence of Rashba spin-orbit interaction (RSOI) and a magnetic flux using quantum waveguide theory. This study illustrates that, by tuning Rashba constant, magnetic flux and incoming electron energy, the triangular network of quantum rings can act as a perfect logical spin-filtering with high efficiency. By changing in the energy of incoming electron, at a proper value of the Rashba constant and magnetic flux, a reverse in the direction of spin can take place in the triangular network of quantum nanorings. Furthermore, the triangular network of quantum nanorings can be designed as a device and shows several simultaneous spintronic properties such as spin-splitter and spin-inverter. This spin-splitting is dependent on the energy of the incoming electron. Additionally, different polarizations can be achieved in the two outgoing leads from an originally incoming spin state that simulates a Stern-Gerlach apparatus." @default.
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- W2756557465 date "2018-01-01" @default.
- W2756557465 modified "2023-09-30" @default.
- W2756557465 title "Logical spin-filtering in a triangular network of quantum nanorings with a Rashba spin-orbit interaction" @default.
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- W2756557465 doi "https://doi.org/10.1016/j.physb.2017.09.076" @default.
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