Phase-resolved Higgs response in superconducting cuprates

Author:

Chu Hao,Kim Min-Jae,Katsumi KotaORCID,Kovalev Sergey,Dawson Robert David,Schwarz LukasORCID,Yoshikawa NaotakaORCID,Kim Gideok,Putzky Daniel,Li Zhi Zhong,Raffy Hélène,Germanskiy SemyonORCID,Deinert Jan-ChristophORCID,Awari NileshORCID,Ilyakov Igor,Green Bertram,Chen Min,Bawatna Mohammed,Cristiani Georg,Logvenov Gennady,Gallais YannORCID,Boris Alexander V.,Keimer BernhardORCID,Schnyder Andreas P.,Manske Dirk,Gensch MichaelORCID,Wang ZheORCID,Shimano Ryo,Kaiser StefanORCID

Abstract

AbstractIn high-energy physics, the Higgs field couples to gauge bosons and fermions and gives mass to their elementary excitations. Experimentally, such couplings can be inferred from the decay product of the Higgs boson, i.e., the scalar (amplitude) excitation of the Higgs field. In superconductors, Cooper pairs bear a close analogy to the Higgs field. Interaction between the Cooper pairs and other degrees of freedom provides dissipation channels for the amplitude mode, which may reveal important information about the microscopic pairing mechanism. To this end, we investigate the Higgs (amplitude) mode of several cuprate thin films using phase-resolved terahertz third harmonic generation (THG). In addition to the heavily damped Higgs mode itself, we observe a universal jump in the phase of the driven Higgs oscillation as well as a non-vanishing THG above Tc. These findings indicate coupling of the Higgs mode to other collective modes and potentially a nonzero pairing amplitude above Tc.

Funder

Daimler und Benz Stiftung

Ministerium für Wissenschaft, Forschung und Kunst Baden-Württemberg

Publisher

Springer Science and Business Media LLC

Subject

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

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