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Spinons and damped phonons in the spin-12 quantum liquid Ba4Ir3O10 observed by Raman scattering

In spin-1/2 Mott insulators, nonmagnetic quantum liquid phases are often argued to arise when the system shows no magnetic ordering, but identifying positive signatures of these phases or related spinon quasiparticles can be elusive. Here, we use Raman scattering to provide three signatures for spin...

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Bibliographic Details
Published in:Physical review. B 2022-08, Vol.106 (7)
Main Authors: Sokolik, Aaron, Hakani, Sami, Roy, Susmita, Pellatz, Nicholas, Zhao, Hengdi, Cao, Gang, Kimchi, Itamar, Reznik, Dmitry
Format: Article
Language:English
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Summary:In spin-1/2 Mott insulators, nonmagnetic quantum liquid phases are often argued to arise when the system shows no magnetic ordering, but identifying positive signatures of these phases or related spinon quasiparticles can be elusive. Here, we use Raman scattering to provide three signatures for spinons in a possible spin-orbit quantum liquid material Ba4Ir3O10: (1) a broad hump, which we show can arise from Luttinger liquid spinons in Raman with parallel photon polarizations normal to one-dimensional chains; (2) strong phonon damping from phonon-spin coupling via the spin-orbit interaction; and (3) the absence of (1) and (2) in the magnetically ordered phase that is produced when 2% of Ba is substituted by Sr [(Ba0.98Sr0.02)4Ir3O10]. Furthermore, the phonon damping via itinerant spinons seen in this quantum liquid insulator suggests a mechanism for enhancing thermoelectricity in strongly correlated conductors, through a neutral quantum liquid that need not affect electronic transport.
ISSN:2469-9950
2469-9969