Kawasaki Shinji, Tsukuda Nao, Lin Chengtian, Zheng Guo-Qing
Department of Physics, Okayama University, Okayama, Japan.
Max-Planck-Institut fur Festkorperforschung, Stuttgart, Germany.
Nat Commun. 2024 Jun 14;15(1):5082. doi: 10.1038/s41467-024-49225-w.
The mechanism of high-temperature superconductivity in copper oxides (cuprate) remains elusive, with the pseudogap phase considered a potential factor. Recent attention has focused on a long-range symmetry-broken charge-density wave (CDW) order in the underdoped regime, induced by strong magnetic fields. Here by Cu-nuclear magnetic resonance, we report the discovery of a long-range CDW order in the optimally doped BiSrLaCuO superconductor, induced by in-plane strain exceeding ∣ε∣ = 0.15 %, which deliberately breaks the crystal symmetry of the CuO plane. We find that compressive/tensile strains reduce superconductivity but enhance CDW, leaving superconductivity to coexist with CDW. The findings show that a long-range CDW order is an underlying hidden order in the pseudogap state, not limited to the underdoped regime, becoming apparent under strain. Our result sheds light on the intertwining of various orders in the cuprates.
铜氧化物(铜酸盐)中的高温超导机制仍然难以捉摸,赝能隙相被认为是一个潜在因素。最近的研究重点集中在欠掺杂区域中由强磁场诱导的长程对称性破缺电荷密度波(CDW)序。在此,通过铜核磁共振,我们报告了在最佳掺杂的BiSrLaCuO超导体中发现的长程CDW序,该序由超过|ε| = 0.15%的面内应变诱导产生,这种应变故意破坏了CuO平面的晶体对称性。我们发现压缩/拉伸应变会降低超导性,但会增强CDW,使得超导性与CDW共存。这些发现表明,长程CDW序是赝能隙态中的一种潜在隐藏序,并不局限于欠掺杂区域,在应变下会变得明显。我们的结果揭示了铜酸盐中各种序的交织情况。