Growth, electronic structure and superconductivity of ultrathin epitaxial CoSi2 films

Author:

Fang Yuan,Wang Ding,Li Peng,Su Hang,Le Tian,Wu Yi,Yang Guo-Wei,Zhang Hua-Li,Xiao Zhi-Guang,Sun Yan-Qiu,Hong Si-Yuan,Xie Yan-WuORCID,Wang Huan-Hua,Cao Chao,Lu XinORCID,Yuan Hui-QiuORCID,Liu YangORCID

Abstract

Abstract We report growth, electronic structure and superconductivity of ultrathin epitaxial CoSi2 films on Si (111). At low coverages, preferred islands with 2, 5 and 6 monolayers height develop, which agrees well with the surface energy calculation. We observe clear quantum well states as a result of electronic confinement and their dispersion agrees well with density functional theory calculations, indicating weak correlation effect despite strong contributions from Co 3d electrons. Ex situ transport measurements show that superconductivity persists down to at least 10 monolayers, with reduced T c but largely enhanced upper critical field. Our study opens up the opportunity to study the interplay between quantum confinement, interfacial symmetry breaking and superconductivity in an epitaxial silicide film, which is technologically relevant in microelectronics.

Funder

National Key R&D Program of the MOST of China

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science

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