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Multi-Center Magnon Excitations Open the Entire Brillouin Zone to Terahertz Magnetometry of Quantum Magnets

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arxiv 2203.04343 v1 pith:5RDTE3GG submitted 2022-03-08 cond-mat.str-el cond-mat.mtrl-sciquant-ph

Multi-Center Magnon Excitations Open the Entire Brillouin Zone to Terahertz Magnetometry of Quantum Magnets

classification cond-mat.str-el cond-mat.mtrl-sciquant-ph
keywords brillouinexcitationsmagnonzonedistortedentirekagomemagnetic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Due to the small photon momentum, optical spectroscopy commonly probes magnetic excitations only at the center of the Brillouin zone; however, there are ways to override this restriction. In the case of the distorted kagome quantum magnet Y-kapellasite, Y$_3$Cu$_9$(OH)$_{19}$Cl$_8$, under scrutiny here, the magnon density of states can be accessed over the entire Brillouin zone through three-center magnon excitations. This mechanism is aided by the three different magnetic sublattices and strong short-range correlations in the distorted kagome lattice. The results of THz time-domain experiments agree remarkably well with linear spin-wave theory. Relaxing the conventional zone-center constraint of photons gives a new aspect to probe magnetism in matter.

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