Pang Guiming, Smidman Michael, Jiao Wenhe, Jiao Lin, Weng Zongfa, Jiang Wenbing, Guo Chunyu, Chen Ye, Cao Guanghan, Yuan Huiqiu
Center for Correlated Matter and Department of Physics, Zhejiang University, Hangzhou 310058, People's Republic of China.
J Phys Condens Matter. 2018 Feb 7;30(5):055701. doi: 10.1088/1361-648X/aaa3b6.
We report an investigation of the London penetration depth [Formula: see text] on single crystals of the layered superconductor TaPdTe, where the crystal structure has quasi-one-dimensional characteristics. A linear temperature dependence of [Formula: see text] is observed for [Formula: see text], in contrast to the exponential behavior of fully gapped superconductors. This indicates the existence of line nodes in the superconducting energy gap. A detailed analysis shows that the normalized superfluid density [Formula: see text], which is converted from [Formula: see text], can be well described by a multigap scenario, with nodes in one of the superconducting gaps, providing clear evidence for nodal superconductivity in TaPdTe.
我们报告了对层状超导体TaPdTe单晶的伦敦穿透深度[公式:见正文]的研究,其晶体结构具有准一维特征。对于[公式:见正文],观察到[公式:见正文]与温度呈线性关系,这与完全能隙超导体的指数行为形成对比。这表明超导能隙中存在线节点。详细分析表明,从[公式:见正文]转换而来的归一化超流密度[公式:见正文]可以用多能隙模型很好地描述,其中一个超导能隙中存在节点,这为TaPdTe中的节点超导性提供了明确证据。