3:1 magnetization plateau and suppression of ferroelectric polarization in an Ising chain multiferroic

Abstract

Ferroelectric Ising chain magnet Ca3Co2-xMnxO6 (x0.96) was studied in magnetic fields up to 33 T. Magnetization and neutron scattering measurements reveal successive metamagnetic transitions from the zero-field spin configuration to the state with a broad magnetization plateau, and then to the state. The absence of hysteresis in these plateaus reveals an intriguing coupling between the intra-chain state and the three-dimensional geometrically frustrated magnetic system. Inversion symmetry, broken in the state, is restored in the state, leading to the complete suppression of the electric polarization driven by symmetric superexchange.

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