Signatures of a Majorana-Fermi surface in the Kitaev magnet Ag3LiIr2O6

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Abstract

Detecting Majorana fermions in experimental realizations of the Kitaev honeycomb model is often complicated by non-trivial interactions inherent to potential spin liquid candidates. In this work, we identify several distinct thermodynamic signatures of massive, itinerant Majorana fermions within the well-established analytical paradigm of Landau-Fermi liquid theory. We find a qualitative and quantitative agreement between the salient features of our Landau-Majorana liquid theory and the Kitaev spin liquid candidate Ag3LiIr2O6. Our study presents strong evidence for a Fermi liquid-like ground state in the fundamental excitations of a honeycomb iridate, and opens new experimental avenues to detect itinerant Majorana fermions in condensed matter systems.

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Heath, J. T., Bahrami, F., Lee, S., Movshovich, R., Chen, X., Tafti, F., & Bedell, K. (2023). Signatures of a Majorana-Fermi surface in the Kitaev magnet Ag3LiIr2O6. Communications Physics, 6(1). https://doi.org/10.1038/s42005-023-01403-w

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