Signature of quantum criticality in cuprates by charge density fluctuations

Author:

Arpaia RiccardoORCID,Martinelli Leonardo,Sala Marco MorettiORCID,Caprara SergioORCID,Nag AbhishekORCID,Brookes Nicholas B.ORCID,Camisa Pietro,Li Qizhi,Gao QiangORCID,Zhou XingjiangORCID,Garcia-Fernandez MirianORCID,Zhou Ke-JinORCID,Schierle EnricoORCID,Bauch ThiloORCID,Peng Ying YingORCID,Di Castro CarloORCID,Grilli MarcoORCID,Lombardi FlorianaORCID,Braicovich LucioORCID,Ghiringhelli GiacomoORCID

Abstract

AbstractThe universality of the strange metal phase in many quantum materials is often attributed to the presence of a quantum critical point (QCP), a zero-temperature phase transition ruled by quantum fluctuations. In cuprates, where superconductivity hinders direct QCP observation, indirect evidence comes from the identification of fluctuations compatible with the strange metal phase. Here we show that the recently discovered charge density fluctuations (CDF) possess the right properties to be associated to a quantum phase transition. Using resonant x-ray scattering, we studied the CDF in two families of cuprate superconductors across a wide doping range (up to p = 0.22). At p* ≈ 0.19, the putative QCP, the CDF intensity peaks, and the characteristic energy Δ is minimum, marking a wedge-shaped region in the phase diagram indicative of a quantum critical behavior, albeit with anomalies. These findings strengthen the role of charge order in explaining strange metal phenomenology and provide insights into high-temperature superconductivity.

Funder

Ministero dell'Istruzione, dell'Università e della Ricerca

Vetenskapsrådet

Sapienza Università di Roma

EC | Horizon 2020 Framework Programme

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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