paper

Stacking faults in -RuCl revealed by local electric polarization

arXiv:2104.13637 · doi:10.1103/PhysRevB.103.174413

Abstract

We present out-of-plane dielectric and magnetodielectric measurements of single crystallines -RuCl with various degrees of stack faults. A frequency dependent, but field independent, dielectric anomaly appears at 4 K once both magnetic transitions at 7 K and 14 K set in. The observed dielectric anomaly is attributed to the emergency of possible local electric polarizations whose inversion symmetry is broken by inhomogeneously distributed stacking faults. A field-induced intermediate phase is only observed when a magnetic field is applied perpendicular to the Ru-Ru bonds for samples with minimal stacking faults. Less pronounced in-plane anisotropy is found in samples with sizable contribution from stacking imperfections. Our findings suggest that dielectric measurement is a sensitive probe in detecting the structural and magnetic properties, which may be a promising tool especially in studying -RuCl thin film devices. Moreover, the stacking details of RuCl layers strongly affect the ground state both in the magnetic and electric channels. Such a fragile ground state against stacking faults needs to be overcome for realistic applications utilizing the magnetic and/or electric properties of Kitaev based physics in -RuCl.

8 pages, 5 figures. Accepted for publication in Physical Review B

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