Room-temperature Magnetoelastic Coupling in UIr4Al15
Mingyu Xu, Tomasz Klimczuk, M. Brian Maple, Weiwei Xie
Abstract
The interplay between electronic and structural degrees of freedom underpins many emergent phenomena in quantum materials, yet magnetoelastic coupling in metallic systems is typically weak and confined to low temperatures or microscopic length scales. Here, we report giant magnetoelastic coupling slightly above room temperature in the uranium-based intermetallic compound UIr4Al15. Using temperature-dependent single-crystal X-ray diffraction together with anisotropic magnetic susceptibility measurements, we directly resolve subtle but reproducible structural distortions coupled to magnetic alignment. Despite the absence of crystallographic symmetry breaking, pronounced anomalies emerge in lattice parameters and selected chemical bond distances near the magnetic transition region, revealing an unusual sensitivity of the crystal structure to magnetic orientation. The coupling enables direct probing of how atomic distances and local chemical bonding govern the electronic and magnetic states in a bulk intermetallic material. Our results establish UIr4Al15 as a rare platform in which magnetism and lattice distortions are strongly intertwined near room temperature, opening new opportunities for magnetically responsive quantum materials and functional magnetic sensing applications.
Create a lesson
Related papers
Magnetic Phase Diagrams and Spin Hamiltonian of Monoclinic α-RuCl3 from Angle-Dependent Torque Studies
Daniel Antoniou, Danrui Ni, John S. Pearce et al.
Frustration-induced multiferroicity in hauerite MnS2
Vilmos Kocsis, Harish K. Singh, Kranthi K. Bestha et al.
Why polar excitons stay sharp: parity protection of the center-of-mass recoil channel in exciton-phonon scattering
Michael O. Atambo
Mass-asymmetry-controlled exciton dressing and dissociation in a quantum lattice model
Michael O. Atambo
Na2IrIVCl6: The Missing Member of the Perfectly Cubic Vacancy Ordered A2IrCl6 Family, Another Potential Jeff = 12 Ground State Candidate
Siddhartha Sankar Soren, Aditya Patra, Rounak Das et al.
Robustness of the Verwey transition against remanent strain-induced defects in magnetite
M. A. Gala, K. J. Grzywa, K. Komędera et al.