English

Evolution of the structural transition in Mo$_{1-x}$W$_{x}$Te$_{2}$

Materials Science 2020-08-26 v3

Abstract

The composition dependence of the structural transition between the monoclinic 1T^{\prime} and orthorhombic Td_{d} phases in the Mo1x_{1-x}Wx_{x}Te2_{2} Weyl semimetal was investigated by elastic neutron scattering on single crystals up to x0.54x \approx 0.54. First observed in MoTe2_{2}, the transition from Td_{d} to 1T^{\prime} is accompanied by an intermediate pseudo-orthorhombic phase, Td_{d}^{*}. Upon doping with W, the Td_{d}^{*} phase vanishes by x0.34x \approx 0.34. Above this concentration, a phase coexistence behavior with both Td_{d} and 1T^{\prime} is observed instead. The interlayer in-plane positioning parameter δ\delta, which relates to the 1T^{\prime} β\beta angle, decreases with temperature as well as with W substitution, likely due to strong anharmonicity in the interlayer interactions. The temperature width of the phase coexistence remains almost constant up to x0.54x \approx 0.54, in contrast to the broadening reported under pressure.

Keywords

Cite

@article{arxiv.2003.08531,
  title  = {Evolution of the structural transition in Mo$_{1-x}$W$_{x}$Te$_{2}$},
  author = {John A. Schneeloch and Yu Tao and Chunruo Duan and Masaaki Matsuda and Adam A. Aczel and Jaime A. Fernandez-Baca and Guangyong Xu and Jörg C. Neuefeind and Junjie Yang and Despina Louca},
  journal= {arXiv preprint arXiv:2003.08531},
  year   = {2020}
}

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R2 v1 2026-06-23T14:19:28.869Z