Lyatti M, Gundareva I, Röper T, Popović Z, Jalil A R, Grützmacher D, Schäpers T
Peter Grünberg Institut (PGI-9), Forschungszentrum Jülich, 52425, Jülich, Germany.
JARA-Fundamentals of Future Information Technology, Jülich-Aachen Research Alliance , Forschungszentrum Jülich and RWTH Aachen University, Jülich, Germany.
Sci Rep. 2024 Sep 27;14(1):22174. doi: 10.1038/s41598-024-73207-z.
The d-wave symmetry of the order parameter with zero energy gap in nodal directions stands in the way of using high-temperature superconductors for quantum applications. We investigate the symmetry of the order parameter in ultra-thin YBaCuO (YBCO) films by measuring the electrical transport properties of nanowires aligned at different angles relative to the main crystallographic axes. The anisotropy of the nanowire critical current in the nodal and antinodal directions reduces with the decrease in the film thickness. The Andreev reflection spectroscopy of the nanoconstrictions shows the presence of a thickness-dependent energy gap that does not exist in bulk YBCO. We find that the thickness-dependent energy gap appears due to the quantum size effects in ultra-thin YBCO films that open the energy gap along the entire Fermi surface. The fully gapped state of the ultra-thin YBCO films makes them a promising platform for quantum applications, including quantum computing and quantum communications.
节点方向能隙为零的序参量的d波对称性阻碍了高温超导体在量子应用中的使用。我们通过测量相对于主要晶轴以不同角度排列的纳米线的电输运性质,研究了超薄钇钡铜氧(YBCO)薄膜中序参量的对称性。节点和反节点方向上纳米线临界电流的各向异性随着薄膜厚度的减小而降低。纳米缩颈的安德列夫反射光谱表明存在与厚度有关的能隙,而块状YBCO中不存在这种能隙。我们发现,与厚度有关的能隙是由于超薄YBCO薄膜中的量子尺寸效应导致的,这种效应沿整个费米面打开了能隙。超薄YBCO薄膜的完全能隙状态使其成为包括量子计算和量子通信在内的量子应用的一个有前景的平台。