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Quantum electron liquid and its possible phase transition

Authors :
Kim, Sunghun
Bang, Joonho
Lim, Chan-young
Lee, Seung Yong
Hyun, Jounghoon
Lee, Gyubin
Lee, Yeonghoon
Denlinger, Jonathan D.
Huh, Soonsang
Kim, Changyoung
Song, Sang Yong
Seo, Junpil
Thapa, Dinesh
Kim, Seong-Gon
Lee, Young Hee
Kim, Yeongkwan
Kim, Sung Wng
Source :
Nature Material (2022)
Publication Year :
2022

Abstract

Purely quantum electron systems exhibit intriguing correlated electronic phases by virtue of quantum fluctuations in addition to electron-electron interactions. To realize such quantum electron systems, a key ingredient is dense electrons decoupled from other degrees of freedom. Here, we report the discovery of a pure quantum electron liquid, which spreads up to ~ 3 {\AA} in the vacuum on the surface of electride crystal. An extremely high electron density and its weak hybridisation with buried atomic orbitals evidence the quantum and pure nature of electrons, that exhibit a polarized liquid phase as demonstrated by our spin-dependent measurement. Further, upon enhancing the electron correlation strength, the dynamics of quantum electrons changes to that of non-Fermi liquid along with an anomalous band deformation, suggestive of a transition to a hexatic liquid crystal phase. Our findings cultivate the frontier of quantum electron systems, and serve as a platform for exploring correlated electronic phases in a pure fashion.<br />Comment: 29 pages, 4 figures, 10 extended data figures

Details

Database :
arXiv
Journal :
Nature Material (2022)
Publication Type :
Report
Accession number :
edsarx.2209.15297
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41563-022-01353-8