Manifestation of magnetic quantum fluctuations in the dielectric properties of a multiferroic

Jae Wook Kim, Seunghyun Khim, Sae Hwan Chun, Y. Jo, L. Balicas, H. T. Yi, S. W. Cheong, N. Harrison, C. D. Batista, Jung Hoon Han, Kee Hoon Kim

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26 Scopus citations

Abstract

Insulating magnets can display novel signatures of quantum fluctuations as similar to the case of metallic magnets. However, their weak spin-lattice coupling has made such observations challenging. Here we find that antiferromagnetic (AF) quantum fluctuations manifest in the dielectric properties of multiferroic Ba 2 CoGe 2 O 7, where a ferroelectric polarization develops concomitant to an AF ordering. Upon application of a magnetic field (H), dielectric constant shows a characteristic power-law dependence near absolute zero temperature and close to the critical field H c =37.1â‰T due to enhanced AF quantum fluctuations. When H>H c, the dielectric constant shows the temperature-dependent anomalies that reflect a crossover from a field-tuned quantum critical to a gapped spin-polarized state. We uncover theoretically that a linear relation between AF susceptibility and dielectric constant stems from the generic magnetoelectric coupling and directly explains the experimental findings, opening a new pathway for studying quantum criticality in condensed matter.

Original languageEnglish
Article number4419
JournalNature Communications
Volume5
DOIs
StatePublished - 29 Jul 2014

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