Unconventional Coherence Peak in Cuprate Superconductors
Abstract
The Hebel-Slichter coherence peak, observed in the spin-lattice relaxation rate just below the critical temperature , serves as a crucial experimental validation of the Bardeen-Cooper-Schrieffer pairing symmetry in conventional superconductors. However, no coherence peak in 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 YBaCuO, pointing to a distinctive pairing symmetry. The spin-lattice relaxation rate in nuclear quadrupole resonance and nuclear magnetic resonance with nuclear spin comprises the magnetic relaxation rate , which probes magnetic fluctuations, and the quadrupole relaxation rate , which probes charge fluctuations. By utilizing Cu and Cu isotopes, we successfully distinguish and of YBaCuO and reveal the presence of the coherence peak in but not in , in contrast to conventional superconductors. Our finding demonstrates that unconventional superconductors do not exhibit a coherence peak in 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 for the chains of YBaCuO 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.
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}
}