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Patterning-Induced Ferromagnetism of Fe3GeTe2 van der Waals Materials beyond Room Temperature
- Li, Qian;
- Yang, Mengmeng;
- Gong, Cheng;
- Chopdekar, Rajesh V;
- N’Diaye, Alpha T;
- Turner, John;
- Chen, Gong;
- Scholl, Andreas;
- Shafer, Padraic;
- Arenholz, Elke;
- Schmid, Andreas K;
- Wang, Sheng;
- Liu, Kai;
- Gao, Nan;
- Admasu, Alemayehu S;
- Cheong, Sang-Wook;
- Hwang, Chanyong;
- Li, Jia;
- Wang, Feng;
- Zhang, Xiang;
- Qiu, Ziqiang
Published Web Location
https://doi.org/10.1021/acs.nanolett.8b02806Abstract
Magnetic van der Waals (vdW) materials have emerged as promising candidates for spintronics applications, especially after the recent discovery of intrinsic ferromagnetism in monolayer vdW materials. There has been a critical need for tunable ferromagnetic vdW materials beyond room temperature. Here, we report a real-space imaging study of itinerant ferromagnet Fe3GeTe2 and the enhancement of its Curie temperature well above ambient temperature. We find that the magnetic long-range order in Fe3GeTe2 is characterized by an unconventional out-of-plane stripe-domain phase. In Fe3GeTe2 microstructures patterned by a focused ion beam, the out-of-plane stripe domain phase undergoes a surprising transition at 230 K to an in-plane vortex phase that persists beyond room temperature. The discovery of tunable ferromagnetism in Fe3GeTe2 materials opens up vast opportunities for utilizing vdW magnets in room-temperature spintronics devices.
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