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Signatures of a surface spin-orbital chiral metal.

Federico MazzolaWojciech BrzezickiMaria Teresa MercaldoAnita GuarinoChiara BigiJill A MiwaDomenico De FazioAlberto CrepaldiJun FujiiGiorgio RossiPasquale OrgianiSandeep Kumar ChaluvadiShyni Punathum ChalilGiancarlo PanaccioneAnupam JanaVincent PolewczykIvana VobornikChangyoung KimFabio Miletto-GranozioRosalba FittipaldiCarmine OrtixMario CuocoAntonio Vecchione
Published in: Nature (2024)
The relation between crystal symmetries, electron correlations and electronic structure steers the formation of a large array of unconventional phases of matter, including magneto-electric loop currents and chiral magnetism 1-6 . The detection of such hidden orders is an important goal in condensed-matter physics. However, until now, non-standard forms of magnetism with chiral electronic ordering have been difficult to detect experimentally 7 . Here we develop a theory for symmetry-broken chiral ground states and propose a methodology based on circularly polarized, spin-selective, angular-resolved photoelectron spectroscopy to study them. We use the archetypal quantum material Sr 2 RuO 4 and reveal spectroscopic signatures that, despite being subtle, can be reconciled with the formation of spin-orbital chiral currents at the surface of the material 8-10 . As we shed light on these chiral regimes, our findings pave the way for a deeper understanding of ordering phenomena and unconventional magnetism.
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