paper

Emergent Dispersive Multipolar Excitations in NaErSe

arXiv:2605.24527 · doi:10.1103/7k9l-j1kh

Abstract

In most condensed-matter systems, local and collective excitations remain decoupled due to their distinct energy scales. Here, we identify coupled local-collective excitations in the triangular antiferromagnet NaErSe by combining neutron spectroscopy with total angular momentum modeling. The low-lying crystalline electric field (CEF) doublets include a dipolar ground state forming stripe- order and a excited state with dipole-octupole character. High-resolution spectra reveal emergent symmetry-selected dispersions, where magnon branches from the ground state are replicated on higher levels but couple with the levels to form a distinct multipolar band. An applied magnetic field reconstructs the CEF wavefunctions and polarizes the system into a multipolar ferromagnet, further reshaping the spectra. This study demonstrates the emergent coupling of local and collective excitations driven by strong spin-orbit coupling and establishes NaErSe as a platform for field-tunable multipolar excitations in frustrated magnets.

7 pages, 4 figures

Emergent Dispersive Multipolar Excitations in NaErSe$_{2}$ · wovepaper