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- W3216610097 abstract "The transtor and memtranstor are the fourth basic linear and memory elements, respectively, which allow direct coupling of charge (q) to magnetic flux (ensuremath{varphi}) via linear and nonlinear magnetoelectric (ME) effects, respectively. It is found here that a large variation of magnetization by an electric field is realized in both linear and nonlinear hysteretic styles in a magnetoelectric Y-type hexaferrite ${mathrm{Ba}}_{0.5}{mathrm{Sr}}_{1.5}{mathrm{Zn}}_{2}({mathrm{Fe}}_{0.92}{mathrm{Al}}_{0.08}{)}_{12}{mathrm{O}}_{22}$ single crystal. Moreover, based on the spin-current model, the underlying microscopic mechanisms for generating the two types of linear and nonlinear M versus E curves are understood to be E-induced changes to the cone angle and sign of P, respectively, establishing the charge-driven transtor and memtranstor in the Y-type hexaferrite system. This work points to a promising pathway to develop alternative circuit functionalities using magnetoelectric materials." @default.
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- W3216610097 date "2021-11-24" @default.
- W3216610097 modified "2023-10-17" @default.
- W3216610097 title "Charge-Driven Transtive Devices via Electric Field Control of Magnetism in a Helimagnet" @default.
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- W3216610097 doi "https://doi.org/10.1103/physrevapplied.16.054046" @default.
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