论文标题

压力诱导的金属化和旋转液体中可能非常规超导性$ naybse_ {2} $

Pressure induced metallization and possible unconventional superconductivity in spin liquid $NaYbSe_{2}$

论文作者

Zhang, Zheng, Yin, Yunyu, Ma, Xiaoli, Liu, Weiwei, Li, Jianshu, Jin, Feng, Ji, Jianting, Wang, Yimeng, Wang, Xiaoqun, Yu, Xiaohui, Zhang, Qingming

论文摘要

除了声子介导的常规电子配对之外,丘比特蛋白酶的高温超导性还源于量子自旋液体(QSL)。通过掺杂旋转液体/mott绝缘子的非常规超导性是一个长期追求的目标,但由于缺乏理想的QSL平台,因此在凝结物理物理学中的主要挑战。在这里,我们报告了$ naybse_ {2} $的压力诱导的金属化和可能的非常规的超导性,该基础属于我们最近揭示的大型且理想的三角形晶格旋转液体家族,并证明具有QSL基态。通过施加压力,naybse2的电荷间隙逐渐减小,在〜20 GPA时,晶体将跳入具有TC〜5.8 K的超导相(SC)相,甚至在绝缘间隙完全封闭之前。金属化通过进一步的高压实验证实,但是超导性的迹象不能很好地重复。 SC转变伴随着不对称的破裂,如X射线衍射和高压下的低温拉曼实验所示。这本质上连接了QSL和SC相,并提出了QSL产生的非常规的超导性。我们进一步观察了磁场调整的超导体 - 绝缘体转变,该过渡类似于在不足的铜酸盐超导体$ la_ {2-x} sr_ {x} cuo_ {4} $中。这项研究有望激发人们对探索新型超导体类型的兴趣,并将光线从旋转液体/莫特绝缘子到超导体的吸引人的物理学中。

Beyond the conventional electron pairing mediated by phonons, high-temperature superconductivity in cuprates is believed to stem from quantum spin liquid (QSL). The unconventional superconductivity by doping a spin liquid/Mott insulator, is a long-sought goal but a principal challenge in condensed matter physics because of the lack of an ideal QSL platform. Here we report the pressure induced metallization and possible unconventional superconductivity in $NaYbSe_{2}$, which belongs to a large and ideal family of triangular lattice spin liquid we revealed recently and is evidenced to possess a QSL ground state. The charge gap of NaYbSe2 is gradually reduced by applying pressures, and at ~20 GPa the crystal jumps into a superconducting (SC) phase with Tc ~ 5.8 K even before the insulating gap is completely closed. The metallization is confirmed by further high-pressure experiments but the sign of superconductivity is not well repeated. No symmetry breaking accompanies the SC transition, as indicated by X-ray diffraction and low-temperature Raman experiments under high pressures. This intrinsically connects QSL and SC phases, and suggests an unconventional superconductivity developed from QSL. We further observed the magnetic-field-tuned superconductor-insulator transition which is analogous to that found in the underdoped cuprate superconductor $La_{2-x}Sr_{x}CuO_{4}$. The study is expected to inspire interest in exploring new types of superconductors and sheds light into the intriguing physics from a spin liquid/Mott insulator to a superconductor.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源