5 years ago

Nematic superconducting state in iron pnictide superconductors.

Johan Vanacken, Liviu F. Chibotaru, Kazunari Yamaura, Hua-Bing Wang, Mei-Ping Jiang, Eiji Takayama-Muromachi, Hai-Luke Feng, Jie Yuan, Meng-Yue Li, Gustaaf Van Tendeloo, Jun-Feng Wang, Yang-Yang Lv, Yong-Jie Liu, Victor V. Moshchalkov, Pei-Heng Wu, Paulo J. Pereira, Takeshi Hatano, Xiaoxing Ke, Zi-Quan Lin, Dachuan Lu, Liang Li, Jun Li

Nematic order often breaks the tetragonal symmetry of iron-based superconductors. It arises from regular structural transition or electronic instability in the normal phase. Here, we report the observation of a nematic superconducting state, by measuring the angular dependence of the in-plane and out-of-plane magnetoresistivity of Ba0.5K0.5Fe2As2 single crystals. We find large twofold oscillations in the vicinity of the superconducting transition, when the direction of applied magnetic field is rotated within the basal plane. To avoid the influences from sample geometry or current flow direction, the sample was designed as Corbino-shape for in-plane and mesa-shape for out-of-plane measurements. Theoretical analysis shows that the nematic superconductivity arises from the weak mixture of the quasi-degenerate s-wave and d-wave components of the superconducting condensate, most probably induced by a weak anisotropy of stresses inherent to single crystals.

Publisher URL: http://arxiv.org/abs/1711.06383

DOI: arXiv:1711.06383v1

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