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- W3109960131 abstract "Metal–insulator transition (MIT) is one of the most conspicuous phenomena in correlated electron systems. However such a transition has rarely been induced by an external magnetic field as the field scale is normally too small compared with the charge gap. We present the observation of a magnetic-field-driven MIT in a magnetic semiconductor β -EuP 3 . Concomitantly, we find a colossal magnetoresistance in an extreme way: the resistance drops billionfold at 2K in a magnetic field less than 3T. We ascribe this striking MIT as a field-driven transition from an antiferromagnetic and paramagnetic insulator to a spin-polarized topological semimetal, in which the spin configuration of Eu 2+ cations and spin-orbital coupling play a crucial role. As a phosphorene-bearing compound whose electrical properties can be controlled by the application of field, β -EuP 3 may serve as a tantalizing material in the basic research and even future electronics." @default.
- W3109960131 created "2020-12-07" @default.
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- W3109960131 date "2020-10-01" @default.
- W3109960131 modified "2023-10-18" @default.
- W3109960131 title "Field-Induced Metal–Insulator Transition in β-EuP<sub>3</sub>*" @default.
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- W3109960131 doi "https://doi.org/10.1088/0256-307x/37/10/107501" @default.
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