English

Superconductivity at 253 K in lanthanum-yttrium ternary hydrides

Superconductivity 2021-05-04 v1

Abstract

Polyhydrides offer intriguing perspectives as high-temperature superconductors. Here we report the high-pressure synthesis of a series of lanthanum-yttrium ternary hydrides: cubic hexahydride (La,Y)H6(La,Y)H_{6} with a critical temperature TCT_{C} = 237 +/- 5 K and decahydrides (La,Y)H10(La,Y)H_{10} with a maximum TCT_{C} ~253K{253 K} and an extrapolated upper critical magnetic field BC2(0)B_{C2(0)} up to 135T{135 T} at 183 GPa. This is one of the first examples of ternary high-TCT_{C} superconducting hydrides. Our experiments show that a part of the atoms in the structures of recently discovered Im3m{Im3m}-YH6YH_{6} and Fm3m{Fm3m}-LaH10LaH_{10} can be replaced with lanthanum (~70 %) and yttrium (~25 %), respectively, with a formation of unique ternary superhydrides containing incorporated La@H24La@H_{24} and Y@H32Y@H_{32} which are specific for Im3m{Im3m}-LaH6LaH_{6} and Fm3m{Fm3m}-YH10YH_{10}. Ternary La-Y hydrides were obtained at pressures of 170-196 GPa via the laser heating of P63P6_{3}/mmc{/mmc} lanthanum-yttrium alloys in the ammonia borane medium at temperatures above 2000 K. A novel tetragonal (La,Y)H4(La,Y)H_{4} was discovered as an impurity phase in synthesized cubic (La,Y)H6(La,Y)H_{6}. The current-voltage measurements show that the critical current density JCJ_{C} in (La,Y)H10(La,Y)H_{10} may exceed 2500A/mm22500 A/mm^{2} at 4.2 K, which is comparable with that for commercial superconducting wires such as NbTi{NbTi}, Nb3Nb_{3}Sn{Sn}. Hydrides that are unstable in a pure form may nevertheless be stabilized at relatively low pressures in solid solutions with superhydrides having the same structure.

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Cite

@article{arxiv.2012.04787,
  title  = {Superconductivity at 253 K in lanthanum-yttrium ternary hydrides},
  author = {Dmitrii V. Semenok and Ivan A. Troyan and Alexander G. Kvashnin and Anna G. Ivanova and Michael Hanfland and Andrey V. Sadakov and Oleg A. Sobolevskiy and Kirill S. Pervakov and Alexander G. Gavriliuk and Igor S. Lyubutin and Konstantin V. Glazyrin and Nico Giordano and Denis N. Karimov and Alexander B. Vasiliev and Ryosuke Akashi and Vladimir M. Pudalov and Artem R. Oganov},
  journal= {arXiv preprint arXiv:2012.04787},
  year   = {2021}
}