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Unconventional Coherence Peak in Cuprate Superconductors

Superconductivity 2025-01-03 v1 Strongly Correlated Electrons

Abstract

The Hebel-Slichter coherence peak, observed in the spin-lattice relaxation rate 1/T11/T_1 just below the critical temperature TcT_{\rm c}, serves as a crucial experimental validation of the Bardeen-Cooper-Schrieffer pairing symmetry in conventional superconductors. However, no coherence peak in 1/T11/T_1 has been observed in unconventional superconductors like cuprates. In this study, an unconventional coherence peak is identified for the first time using nuclear quadrupole resonance on YBa2_2Cu4_4O8_8, pointing to a distinctive pairing symmetry. The spin-lattice relaxation rate in nuclear quadrupole resonance and nuclear magnetic resonance with nuclear spin I>1/2I>1/2 comprises the magnetic relaxation rate 1/T1mag1/T_{1}^{\rm mag}, which probes magnetic fluctuations, and the quadrupole relaxation rate 1/T1quad1/T_{1}^{\rm quad}, which probes charge fluctuations. By utilizing 63^{63}Cu and 65^{65}Cu isotopes, we successfully distinguish 1/T1mag1/T_{1}^{\rm mag} and 1/T1quad1/T_{1 }^{\rm quad} of YBa2_2Cu4_4O8_8 and reveal the presence of the coherence peak in 1/T1quad1/T_{1 }^{\rm quad} but not in 1/T1mag1/T_{1}^{\rm mag}, in contrast to conventional superconductors. Our finding demonstrates that unconventional superconductors do not exhibit a coherence peak in 1/T11/T_{1} when the relaxation is due to fluctuations of the hyperfine field. Conversely, a coherence peak is expected when the relaxation is caused by electric field gradient fluctuations, due to the different coherence factors between charge and magnetic fluctuations. Our successful measurements of 1/T11/T_{1} for the chains of YBa2_2Cu4_4O8_8 suggest that, should the conditions for predominant quadrupole relaxation be satisfied, this phenomenon could provide a novel approach to exploring the unconventional nature of the pairing mechanism in other superconductors.

Keywords

Cite

@article{arxiv.2501.00699,
  title  = {Unconventional Coherence Peak in Cuprate Superconductors},
  author = {Zheng Li and Chao Mu and Pengfei Li and Wei Wu and Jiangping Hu and Tao Xiang and Kun Jiang and Jianlin Luo},
  journal= {arXiv preprint arXiv:2501.00699},
  year   = {2025}
}
R2 v1 2026-06-28T20:53:44.456Z