Probing spin correlations using angle-resolved photoemission in a coupled metallic/Mott insulator system
Sunko V, Mazzola F, Kitamura S, Khim S, Kushwaha P, Clark OJ, Watson MD, Marković I, Biswas D, Pourovskii L, Kim TK, Lee T-L, Thakur PK, Rosner H, Georges A, Moessner R, Oka T, Mackenzie AP, King PDC. 2020. Probing spin correlations using angle-resolved photoemission in a coupled metallic/Mott insulator system. Science Advances. 6(6), aaz0611.
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Author
Sunko, VeronikaISTA
;
Mazzola, F.;
Kitamura, S.;
Khim, S.;
Kushwaha, P.;
Clark, O. J.;
Watson, M. D.;
Marković, I.;
Biswas, D.;
Pourovskii, L.;
Kim, T. K.;
Lee, T.-L.
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All
Abstract
A nearly free electron metal and a Mott insulating state can be thought of as opposite ends of the spectrum of possibilities for the motion of electrons in a solid. Understanding their interaction lies at the heart of the correlated electron problem. In the magnetic oxide metal PdCrO2, nearly free and Mott-localized electrons exist in alternating layers, forming natural heterostructures. Using angle-resolved photoemission spectroscopy, quantitatively supported by a strong coupling analysis, we show that the coupling between these layers leads to an “intertwined” excitation that is a convolution of the charge spectrum of the metallic layer and the spin susceptibility of the Mott layer. Our findings establish PdCrO2 as a model system in which to probe Kondo lattice physics and also open new routes to use the a priori nonmagnetic probe of photoemission to gain insights into the spin susceptibility of correlated electron materials.
Publishing Year
Date Published
2020-02-07
Journal Title
Science Advances
Publisher
American Association for the Advancement of Science
Volume
6
Issue
6
Article Number
aaz0611
eISSN
IST-REx-ID
Cite this
Sunko V, Mazzola F, Kitamura S, et al. Probing spin correlations using angle-resolved photoemission in a coupled metallic/Mott insulator system. Science Advances. 2020;6(6). doi:10.1126/sciadv.aaz0611
Sunko, V., Mazzola, F., Kitamura, S., Khim, S., Kushwaha, P., Clark, O. J., … King, P. D. C. (2020). Probing spin correlations using angle-resolved photoemission in a coupled metallic/Mott insulator system. Science Advances. American Association for the Advancement of Science. https://doi.org/10.1126/sciadv.aaz0611
Sunko, Veronika, F. Mazzola, S. Kitamura, S. Khim, P. Kushwaha, O. J. Clark, M. D. Watson, et al. “Probing Spin Correlations Using Angle-Resolved Photoemission in a Coupled Metallic/Mott Insulator System.” Science Advances. American Association for the Advancement of Science, 2020. https://doi.org/10.1126/sciadv.aaz0611.
V. Sunko et al., “Probing spin correlations using angle-resolved photoemission in a coupled metallic/Mott insulator system,” Science Advances, vol. 6, no. 6. American Association for the Advancement of Science, 2020.
Sunko V, Mazzola F, Kitamura S, Khim S, Kushwaha P, Clark OJ, Watson MD, Marković I, Biswas D, Pourovskii L, Kim TK, Lee T-L, Thakur PK, Rosner H, Georges A, Moessner R, Oka T, Mackenzie AP, King PDC. 2020. Probing spin correlations using angle-resolved photoemission in a coupled metallic/Mott insulator system. Science Advances. 6(6), aaz0611.
Sunko, Veronika, et al. “Probing Spin Correlations Using Angle-Resolved Photoemission in a Coupled Metallic/Mott Insulator System.” Science Advances, vol. 6, no. 6, aaz0611, American Association for the Advancement of Science, 2020, doi:10.1126/sciadv.aaz0611.
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PMID: 32128385
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