English

Possible "Magn\'eli" phases and self-alloying in the superconducting sulfur hydride

Superconductivity 2016-08-12 v2

Abstract

We theoretically give an infinite number of metastable crystal structures for the superconducting sulfur hydride Hx_{x}S under pressure. It has been thought that theoretically predicted structures of H2_{2}S and H3_{3}S exhibit low and high TcT_{\rm c} in the experiment, respectively. The newly found structures are long-period modulated crystals where slab-like H2_{2}S and H3_{3}S regions intergrow in a microscopic scale. The extremely small formation enthalpy for the H2_{2}S--H3_{3}S boundary indicated with the first-principles calculations suggests possible alloying of these phases through formation of local H3_{3}S regions. The modulated structures and gradual alloying transformations between them not only explain the peculiar pressure dependence of TcT_{\rm c} in sulfur hydride observed experimentally, but also could prevail in the experimental samples under various compression schemes.

Keywords

Cite

@article{arxiv.1512.06680,
  title  = {Possible "Magn\'eli" phases and self-alloying in the superconducting sulfur hydride},
  author = {Ryosuke Akashi and Wataru Sano and Ryotaro Arita and Shinji Tsuneyuki},
  journal= {arXiv preprint arXiv:1512.06680},
  year   = {2016}
}

Comments

11 pages, 10 figures. ver2: Tc calculation and Xray simulation added