DOE OSTI · 1797949
Proximate Quantum Spin Liquid on Designer Lattice
Abstract
Complementary to bulk synthesis, here we propose a designer lattice with extremely high magnetic frustration and demonstrate the possible realization of a quantum spin liquid state from both experiments and theoretical calculations. In an ultrathin (111) CoCr 2 O 4 slice composed of three triangular and one kagome cation planes, the absence of a spin ordering or freezing transition is demonstrated down to 0.03 K, in the presence of strong antiferromagnetic correlations in the energy scale of 30 K between Co and Cr sublattices, leading to the frustration factor of similar to 1000. Persisting spin fluctuations are observed at low temperatures via low-energy muon spin relaxation. Our calculations further demonstrate the emergence of highly degenerate magnetic ground states at the 0 K limit, due to the competition among multiply altered exchange interactions. Furthermore, these results collectively indicate the realization of a proximate quantum spin liquid state on the synthetic lattice.
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Liu, Xiaoran, Singh, Sobhit, Drouin-Touchette, Victor, Asaba, Tomoya, Brewer, Jess, Zhang, Qinghua, Cao, Yanwei, Pal, Banabir, Middey, Srimanta, Kumar, P. Anil, Kareev, Mikhail, Gu, Lin, Sarma, D. D., Shafer, Padraic, Arenholz, Elke, Freeland, John W., Li, Lu, Vanderbilt, David, Chakhalian, Jak. 2021-02-22. Proximate Quantum Spin Liquid on Designer Lattice. https://doi.org/10.1021/acs.nanolett.0c04498
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