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Paramagnons and high-temperature superconductivity in a model family of cuprates.


ABSTRACT: Cuprate superconductors have the highest critical temperatures (Tc) at ambient pressure, yet a consensus on the superconducting mechanism remains to be established. Finding an empirical parameter that limits the highest reachable Tc can provide crucial insight into this outstanding problem. Here, in the first two Ruddlesden-Popper members of the model Hg-family of cuprates, which are chemically nearly identical and have the highest Tc among all cuprate families, we use inelastic photon scattering to reveal that the energy of magnetic fluctuations may play such a role. In particular, we observe the single-paramagnon spectra to be nearly identical between the two compounds, apart from an energy scale difference of ~30% which matches their difference in Tc. The empirical correlation between paramagnon energy and maximal Tc is further found to extend to other cuprate families with relatively high Tc's, hinting at a fundamental connection between them.

SUBMITTER: Wang L 

PROVIDER: S-EPMC9174205 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Paramagnons and high-temperature superconductivity in a model family of cuprates.

Wang Lichen L   He Guanhong G   Yang Zichen Z   Garcia-Fernandez Mirian M   Nag Abhishek A   Zhou Kejin K   Minola Matteo M   Tacon Matthieu Le ML   Keimer Bernhard B   Peng Yingying Y   Li Yuan Y  

Nature communications 20220607 1


Cuprate superconductors have the highest critical temperatures (T<sub>c</sub>) at ambient pressure, yet a consensus on the superconducting mechanism remains to be established. Finding an empirical parameter that limits the highest reachable T<sub>c</sub> can provide crucial insight into this outstanding problem. Here, in the first two Ruddlesden-Popper members of the model Hg-family of cuprates, which are chemically nearly identical and have the highest T<sub>c</sub> among all cuprate families,  ...[more]

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