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Persistence of fermionic spin excitations through a genuine Mott transition in $\kappa$-type organics

Strongly Correlated Electrons 2022-04-06 v1 Materials Science Superconductivity

Abstract

We investigate the continuous variation of electronic states from a Fermi liquid to a quantum spin liquid induced by chemical substitution in the organic dimer-Mott system of κ\kappa-[(BEDSe-TTF)x_x(BEDT-TTF)1x_{1-x}]2_2Cu[N(CN)2_2]Br. Electrical transport measurements reveal that the mixing of BEDSe-TTF into the BEDT-TTF layers induces a quantum Mott transition around xx=0.10. Although a charge gap disappears at this point, magnetic susceptibility and heat capacity measurements indicate that fermionic low-energy excitations remain in the insulating salts, suggesting that fermionic spin excitations persist. We propose that the transition can be classified into a genuine Mott transition.

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Cite

@article{arxiv.2203.03901,
  title  = {Persistence of fermionic spin excitations through a genuine Mott transition in $\kappa$-type organics},
  author = {Shusaku Imajo and Naoko Kato and Robert J. Marckwardt and Emre Yesil and Hiroki Akutsu and Yasuhiro Nakazawa},
  journal= {arXiv preprint arXiv:2203.03901},
  year   = {2022}
}

Comments

7pages, 1 table, and 4 figures