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- W3206935148 abstract "MnBi2nTe3n+1(MBT) is the first intrinsic magnetic topological insulator and is promising to hostemergent phenomena such as quantum anomalous Hall effect. They can be made ferromagnetic by having n >= 4 or with Sb doping. We studied the magnetic dynamics in a few selected ferromag-netic (FM) MBT compounds, including MnBi8Te13and Sb doped MnBi2nTe3n+1(n= 2,3) usingAC susceptibility and magneto-optical imaging. Slow relaxation behavior is observed in all threecompounds, suggesting its universality among FM MBT. We attribute the origin of the relaxationbehavior to the irreversible domain movements since they only appear below the saturation fieldswhen ferromagnetic domains form. The very soft ferromagnetic domain nature is revealed by thelow-field fine-structured domains and high-field sea-urchin-shaped remanent-state domains imagedvia our magneto-optical measurements. Finally, we ascribe the rare double-peak behavior ob-served in the AC susceptibility under small DC bias fields to the very soft ferromagnetic domainformations." @default.
- W3206935148 created "2021-10-25" @default.
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- W3206935148 date "2021-10-29" @default.
- W3206935148 modified "2023-10-13" @default.
- W3206935148 title "Unusual dynamic susceptibility arising from soft ferromagnetic domains in MnBi<sub>8</sub>Te<sub>13</sub> and Sb-doped MnBi 2n Te 3n+1 (n = 2, 3)" @default.
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- W3206935148 doi "https://doi.org/10.1088/1361-6463/ac3032" @default.
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