vix.ing · top · new · best · stats · spec

Competing electronic ground states in the heavy-fermion superconductor CeRh2As2

2024/12/24 by Joanna Bławat, Bławat, Joanna, Grzegorz Chajewski +11
Physics and Astronomy · Materials Science · Chemistry · #Rare-earth and actinide compounds #Iron-based superconductors research #Inorganic Chemistry and Materials

paper · pdf · doi:10.48550/arxiv.2412.18068

Abstract

CeRh2As2 is rare among superconductors, in that magnetic field tunes it between two distinct superconducting phases. Combined with a lack of local inversion symmetry and an upper critical field exceeding the Pauli paramagnetic limit, this excitingly suggests triplet multicomponent superconductivity. Preceding the superconducting onset, f-electron correlations cause long-range order, attributed both to local antiferromagnetism and itinerant (quadrupole) density-waves. Magnetic field provides a significant perturbation of the f-electron and may reveal the nature of the many-body correlations. Thus, we report comprehensive magnetization and magnetotransport studies on microstructured devices in fields of up to 73 T. Applied along the c-axis, field causes a low-temperature valence transition at μ0H ~ 24 T. By contrast, in-plane fields produce a cascade of phase transitions; the field-induced in-plane conductivity anisotropy and lack of accompanying magnetic features, plus the closed-dome nature of the overall phase boundary is consistent with a hierarchy of field-induced density-wave states.

Related