Crystal-Field--Driven Magnetoelectricity in the Triangular Quantum Magnet CeMgAlO
arXiv:2510.08746 · doi:10.1103/c3hd-pwby
Abstract
We report dielectric and magnetoelectric studies of single-crystalline \ce{CeMgAl11O19}, a Kramers triangular magnet embedded in a polarizable hexaaluminate lattice. In zero magnetic field, the permittivity follows the Barrett law of a quantum paraelectric down to 25 K, below which a broad minimum develops near 3 K without evidence of static ferroelectric or magnetic order. Application of magnetic fields up to \SI{9}{\tesla} shifts this minimum to higher temperatures and broadens it, evidencing a tunable magnetoelectric response.The magnetoelectric coupling was characterized using results from magnetization measurements. The anomaly temperature , extracted from the local minimum of , exhibits a linear dependence on the squared magnetization , consistent with the biquadratic magnetoelectric coupling allowed in centrosymmetric systems. This magnetoelectric effect, mediated by spin-orbit-entangled Kramers doublets interacting with a frustrated antipolar liquid, establishes \ce{CeMgAl11O19} as a prototype for exploring quantum magnetoelectricity in frustrated systems.
v2-preprint (metadata update only; v1-preprint), Licence: CC BY 4.0
References in corpus (19)
- Spin current and magneto-electric effect in non-collinear magnets
- Role of the Dzyaloshinskii-Moriya interaction in multiferroic perovskites
- Ferroelectricity in the Magnetic E-Phase of Orthorhombic Perovskites
- Gapless quantum spin liquid ground state in the two-dimensional spin-1/2 triangular antiferromagnet YbMgGaO
- Quantum criticality in ferroelectrics
- Spin-polarization coupling in multiferroic transition-metal oxides
- Rare-earth chalcogenides: A large family of triangular lattice spin liquid candidate
- General Theory for the Ferroelectric Polarization Induced by Spin-Spiral Order
- Erratum: Landau Analysis of the Symmetry of the Magnetic Structure and Magnetoelectric Interaction in Multiferroics [Phys. Rev. B 76, 05447 (2007)]
- Anisotropic-Exchange Magnets on a Triangular Lattice: Spin Waves, Accidental Degeneracies, and Dual Spin Liquids
- Magnetodielectric effect and optic soft mode behaviour in quantum paraelectric EuTiO3 ceramics
- Multiferroic Quantum Criticality
- Survival of itinerant excitations and quantum spin state transitions in YbMgGaO with chemical disorder
- Room-Temperature Ferrimagnet with Frustrated Antiferroelectricity: Promising Candidate Toward Multiple State Memory
- Rare-Earth Chalcogenides: An Inspiring Playground For Exploring Frustrated Magnetism
- Colorful points in the XY regime of XXZ quantum magnets
- U(1) Dirac quantum spin liquid candidate in triangular-lattice antiferromagnet CeMgAlO
- Induced quantum magnetism on a triangular lattice of non-Kramers ions in PrMgAl11O19
- A frustrated antipolar phase analogous to classical spin liquids