Electronic phase separation in the itinerant metamagnetic transition of Sr4Ru3O10
Zhiqiang Mao, Meng Zhou, Joe Hooper, Vladimir Golub, Charles J. O'Connor
Abstract
Triple-layered ruthenate Sr4Ru3O10 shows a first-order itinerant metamagnetic transition for in-plane magnetic fields. Our experiments revealed rather surprising behavior in the low-temperature transport properties near this transition. The in-plane magnetoresistivity ρab(H) exhibits ultrasharp steps as the magnetic field sweeps down through the transition. Temperature sweeps of ρab for fields within the transition regime show non-metallic behavior in the up-sweep cycle of magnetic field, but show a significant drop in the down-sweep cycle. These observations indicate that the transition occurs via a new electronic phase separation process; a lowly polarized state is mixed with a ferromagnetic state within the transition regime.
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