论文标题

加压kagome超导体CSV3SB5的紧急电荷顺序和非常规的超导性

Emergent charge order and unconventional superconductivity in pressurized kagome superconductor CsV3Sb5

论文作者

Zheng, Lixuan, Wu, Zhimian, Yang, Ye, Nie, Linpeng, Shan, Min, Sun, Kuanglv, Song, Dianwu, Yu, Fanghang, Li, Jian, Zhao, Dan, Li, Shunjiao, Kang, Baolei, Zhou, Yanbing, Liu, Kai, Xiang, Ziji, Ying, Jianjun, Wang, Zhenyu, Wu, Tao, Chen, Xianhui

论文摘要

在Kagome超导体AV3SB5(A = K,RB,CS)中发现了多个电子订单,为探索前所未有的新兴物理学提供了有前途的平台。在适度的压力(<2.2 GPa)下,三重Q电荷密度波(CDW)顺序通过压力单调抑制,而超导性则表现出两极分的行为,表明超导性和CDW阶之间的异常相互作用。鉴于时间反转对称性断裂和电子词性已经在Triple-Q CDW阶段揭示,因此了解此CDW顺序及其与超导性的相互作用成为AV3SB5中的核心问题之一。在这里,我们报告了CDW和超导性的演变,并在CSV3SB5中通过51V核磁共振测量值进行了压力。在PC1〜0.58 GPA和PC2〜2.0 GPA之间观察到了一个可能具有单向4A0调制的条纹状CDW阶的新兴CDW相,该阶段解释了在压力下的两型型超导行为。此外,核自旋晶格松弛测量结果揭示了在CDW过渡温度高于PC2上方的CDW过渡温度高于CDW过渡温度和非常规的超导配对的证据。我们的结果不仅为超导性和CDW的相互作用提供了新的启示,而且还揭示了Kagome超导体AV3SB5的新型电子相关效应。

The discovery of multiple electronic orders in kagome superconductors AV3Sb5 (A = K, Rb, Cs) provides a promising platform for exploring unprecedented emergent physics. Under moderate pressure (< 2.2 GPa), the triple-Q charge density wave (CDW) order is monotonically suppressed by pressure, while the superconductivity displays a two-dome-like behavior, suggesting an unusual interplay between superconductivity and CDW order. Given that time-reversal symmetry breaking and electronic nematicity have been revealed inside the triple-Q CDW phase, understanding this CDW order and its interplay with superconductivity becomes one of the core questions in AV3Sb5. Here, we report the evolution of CDW and superconductivity with pressure in CsV3Sb5 by 51V nuclear magnetic resonance measurements. An emergent CDW phase, ascribed to a possible stripe-like CDW order with a unidirectional 4a0 modulation, is observed between Pc1 ~ 0.58 GPa and Pc2 ~ 2.0 GPa, which explains the two-dome-like superconducting behavior under pressure. Furthermore, the nuclear spin-lattice relaxation measurement reveals evidence for pressure-independent charge fluctuations above the CDW transition temperature and unconventional superconducting pairing above Pc2. Our results not only shed new light on the interplay of superconductivity and CDW but also reveal novel electronic correlation effects in kagome superconductors AV3Sb5.

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