Troyan Ivan A, Semenok Dmitrii V, Ivanova Anna G, Sadakov Andrey V, Zhou Di, Kvashnin Alexander G, Kruglov Ivan A, Sobolevskiy Oleg A, Lyubutina Marianna V, Perekalin Dmitry S, Helm Toni, Tozer Stanley W, Bykov Maxim, Goncharov Alexander F, Pudalov Vladimir M, Lyubutin Igor S
Shubnikov Institute of Crystallography, Federal Scientific Research Center Crystallography and Photonics, Russian Academy of Sciences, 59 Leninsky Prospekt, Moscow, 119333, Russia.
Center for High Pressure Science and Technology Advanced Research (HPSTAR), Beijing, 100193, China.
Adv Sci (Weinh). 2023 Oct;10(30):e2303622. doi: 10.1002/advs.202303622. Epub 2023 Aug 25.
The chemical interaction of Sn with H by X-ray diffraction methods at pressures of 180-210 GPa is studied. A previously unknown tetrahydride SnH with a cubic structure (fcc) exhibiting superconducting properties below T = 72 K is obtained; the formation of a high molecular C2/m-SnH superhydride and several lower hydrides, fcc SnH , and C2-Sn H , is also detected. The temperature dependence of critical current density J (T) in SnH yields the superconducting gap 2Δ(0) = 21.6 meV at 180 GPa. SnH has unusual behavior in strong magnetic fields: B,T-linear dependences of magnetoresistance and the upper critical magnetic field B (T) ∝ (T - T). The latter contradicts the Wertheimer-Helfand-Hohenberg model developed for conventional superconductors. Along with this, the temperature dependence of electrical resistance of fcc SnH in non-superconducting state exhibits a deviation from what is expected for phonon-mediated scattering described by the Bloch-Grüneisen model and is beyond the framework of the Fermi liquid theory. Such anomalies occur for many superhydrides, making them much closer to cuprates than previously believed.
利用X射线衍射方法研究了在180 - 210吉帕压力下锡与氢的化学相互作用。获得了一种先前未知的具有立方结构(面心立方)的四氢化物SnH,其在低于T = 72 K时表现出超导特性;还检测到了高分子C2/m - SnH超氢化物以及几种较低的氢化物,即面心立方SnH和C2 - SnH的形成。在180吉帕时,SnH中临界电流密度J(T)的温度依赖性得出超导能隙2Δ(0) = 21.6毫电子伏特。SnH在强磁场中具有异常行为:磁阻的B,T线性依赖性以及上临界磁场B(T) ∝ (T - T)。后者与为传统超导体开发的韦特海默 - 赫尔方德 - 霍亨贝格模型相矛盾。与此同时,面心立方SnH在非超导状态下电阻的温度依赖性表现出与布洛赫 - 格律内森模型所描述的声子介导散射预期情况的偏差,并且超出了费米液体理论的框架。许多超氢化物都出现这种异常,这使得它们比之前认为的更接近铜酸盐。