直接可视化 NbSe$_2$ 中由对密度波驱动的向列超导性

Lu Cao, Yucheng Xue, Yingbo Wang, Fu-Chun Zhang, Jian Kang, Hong-Jun Gao, Jinhai Mao, Yuhang Jiang
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引用次数: 0

摘要

对密度波(PDW)是一种独特的超导态,其特征是其阶参数在实空间的周期性调制。它与电荷密度波(CDW)态之间错综复杂的相互作用是凝聚态物理学中一个持续关注的话题。虽然人们已经发现了超导体和其他非常规超导体中的 PDW 状态,但对各种 PDW 及其与不同类型 CDW 的相互作用的了解仍然有限。在这里,我们利用扫描隧道显微镜揭示了 2H-NbSe$_2$ 中的 PDW 基态与两种不同的 CDW 相(即阴离子中心 CDW(AC-CDW)和空心 CDW(HC-CDW))之间的微妙关联。与配对阶次参数相关的超导间隙大小($\Delta(r)$)与两个 CDW 区域的带电强度相一致。同时,定性反映电子对密度的相干峰高$H(r)$相对于CDW表现出大约2美元的相位差。三倍旋转对称性在HC-CDW区得以保留,但在AC-CDW区由于PDW态而自发被打破,从而导致了线性超导的出现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Directly visualizing nematic superconductivity driven by the pair density wave in NbSe$_2$
Pair density wave (PDW) is a distinct superconducting state characterized by a periodic modulation of its order parameter in real space. Its intricate interplay with the charge density wave (CDW) state is a continuing topic of interest in condensed matter physics. While PDW states have been discovered in cuprates and other unconventional superconductors, the understanding of diverse PDWs and their interactions with different types of CDWs remains limited. Here, utilizing scanning tunneling microscopy, we unveil the subtle correlations between PDW ground states and two distinct CDW phases -- namely, anion-centered-CDW (AC-CDW) and hollow-centered-CDW (HC-CDW) -- in 2H-NbSe$_2$. In both CDW regions, we observe coexisting PDWs with a commensurate structure that aligns with the underlying CDW phase. The superconducting gap size, $\Delta(r)$, related to the pairing order parameter is in phase with the charge density in both CDW regions. Meanwhile, the coherence peak height, $H(r)$, qualitatively reflecting the electron-pair density, exhibits a phase difference of approximately $2\pi/3$ relative to the CDW. The three-fold rotational symmetry is preserved in the HC-CDW region but is spontaneously broken in the AC-CDW region due to the PDW state, leading to the emergence of nematic superconductivity.
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