Hicks Clifford W, Lippman Thomas M, Huber Martin E, Analytis James G, Chu Jiun-Haw, Erickson Ann S, Fisher Ian R, Moler Kathryn A
Geballe Laboratory for Advanced Materials, Stanford University, Stanford, California, 94305, USA.
Phys Rev Lett. 2009 Sep 18;103(12):127003. doi: 10.1103/PhysRevLett.103.127003.
We measure changes in the penetration depth lambda of the T_{c} approximately 6 K superconductor LaFePO. In the process, scanning SQUID susceptometry is demonstrated as a technique for accurately measuring local temperature-dependent changes in lambda, ideal for studying early or difficult-to-grow materials. lambda is found to vary linearly with temperatures from 0.36 to approximately 2 K, with a slope of 143 +/- 15 A/K, suggesting line nodes in the superconducting order parameter. The linear dependence up to approximately T_{c}/3, similar to the cuprate superconductors, indicates well-developed nodes.
我们测量了临界温度约为6K的超导体LaFePO的穿透深度λ的变化。在此过程中,扫描超导量子干涉仪磁强计被证明是一种精确测量λ随局部温度变化的技术,非常适合研究早期或难以生长的材料。发现λ在0.36至约2K的温度范围内随温度呈线性变化,斜率为143±15 A/K,这表明超导序参量中存在线节点。高达约Tc/3的线性依赖性,类似于铜酸盐超导体,表明存在发育良好的节点。