Giant phonon anomalies and central peak due to charge density wave formation in YBa₂Cu₃O₆.₆
Tacon, M. Le · Bosak, A. · Souliou, S. M. · Dellea, G. · Loew, T. · Heid, R. · Bohnen, K. -P. · Ghiringhelli, G. · Krisch, M. · Keimer, B.
Original · EN
The electron-phonon interaction is a major factor influencing the competition between collective instabilities in correlated-electron materials, but its role in driving high-temperature superconductivity in the cuprates remains poorly understood. We have used high-resolution inelastic x-ray scattering to monitor low-energy phonons in YBa₂Cu₃O₆.₆ (superconducting Tc = 61 K), which is close to a charge density wave (CDW) instability. Phonons in a narrow range of momentum space around the CDW ordering vector exhibit extremely large superconductivity-induced lineshape renormalizations. These results imply that the electron-phonon interaction has sufficient strength to generate various anomalies in electronic spectra, but does not contribute significantly to Cooper pairing. In addition, a quasi-elastic "central peak" due to CDW nanodomains is observed in a wide temperature range above and below Tc, suggesting that the gradual onset of a spatially inhomogeneous CDW domain state with decreasing temperature is a generic feature of the underdoped cuprates.
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