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Charge density waves in cuprate superconductors beyond the critical doping

Physics

Charge density waves in cuprate superconductors beyond the critical doping

H. Miao, G. Fabbris, et al.

This groundbreaking research reveals that charge density wave (CDW) correlations in La2−xSrxCuO4 persist to a doping level of at least x = 0.21, surpassing the previously believed threshold of xc ≈ 0.19. The findings challenge the common understanding of CDWs and their interactions with superconductivity, providing new insights into the high-temperature cuprate phase diagram. The study was conducted by H. Miao, G. Fabbris, R. J. Koch, D. G. Mazzone, C. S. Nelson, R. Acevedo-Esteves, G. D. Gu, Y. Li, T. Yılmaz, K. Kaznatcheev, E. Vescovo, M. Oda, T. Kurosawa, N. Momono, T. Assefa, I. K. Robinson, E. S. Bozin, J. M. Tranquada, P. D. Johnson, and M. P. M. Dean.... show more
Abstract
The unconventional normal-state properties of the cuprates are often discussed in terms of emergent electronic order that onsets below a putative critical doping of x ≈ 0.19. Charge density wave (CDW) correlations represent one such order; however, experimental evidence for such order generally spans a limited range of doping that falls short of the critical value xc, leading to questions regarding its essential relevance. Here, we use X-ray diffraction to demonstrate that CDW correlations in La2−xSrxCuO4 persist up to a doping of at least x = 0.21. The correlations show strong changes through the superconducting transition, but no obvious discontinuity through x ≈ 0.19, despite changes in Fermi surface topology and electronic transport at this doping. These results demonstrate the interaction between CDWs and superconductivity even in overdoped cuprates and prompt a reconsideration of the role of CDW correlations in the high-temperature cuprate phase diagram.
Publisher
npj Quantum Materials
Published On
Mar 19, 2021
Authors
H. Miao, G. Fabbris, R. J. Koch, D. G. Mazzone, C. S. Nelson, R. Acevedo-Esteves, G. D. Gu, Y. Li, T. Yılmaz, K. Kaznatcheev, E. Vescovo, M. Oda, T. Kurosawa, N. Momono, T. Assefa, I. K. Robinson, E. S. Bozin, J. M. Tranquada, P. D. Johnson, M. P. M. Dean
Tags
charge density wave
Lu2−xSrxCuO4
superconductivity
doping
quantum critical point
high-temperature cuprates
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