Minkov V S, Bud'ko S L, Balakirev F F, Prakapenka V B, Chariton S, Husband R J, Liermann H P, Eremets M I
Max Planck Institute for Chemistry, Hahn Meitner Weg 1, 55128, Mainz, Germany.
Ames Laboratory, U.S. Department of Energy, Iowa State University, Ames, IA, 50011, USA.
Nat Commun. 2022 Jun 9;13(1):3194. doi: 10.1038/s41467-022-30782-x.
In the last few years, the superconducting transition temperature, T, of hydrogen-rich compounds has increased dramatically, and is now approaching room temperature. However, the pressures at which these materials are stable exceed one million atmospheres and limit the number of available experimental studies. Superconductivity in hydrides has been primarily explored by electrical transport measurements, whereas magnetic properties, one of the most important characteristic of a superconductor, have not been satisfactory defined. Here, we develop SQUID magnetometry under extreme high-pressure conditions and report characteristic superconducting parameters for Im-3m-HS and Fm-3m-LaH-the representative members of two families of high-temperature superconducting hydrides. We determine a lower critical field H of ∼0.82 T and ∼0.55 T, and a London penetration depth λ of ∼20 nm and ∼30 nm in HS and LaH, respectively. The small values of λ indicate a high superfluid density in both hydrides. These compounds have the values of the Ginzburg-Landau parameter κ ∼12-20 and belong to the group of "moderate" type II superconductors, rather than being hard superconductors as would be intuitively expected from their high Ts.
在过去几年中,富氢化合物的超导转变温度T急剧上升,目前已接近室温。然而,这些材料保持稳定所需的压力超过了100万个大气压,这限制了可用的实验研究数量。氢化物中的超导性主要通过电输运测量进行探索,而磁性作为超导体最重要的特性之一,尚未得到令人满意的定义。在此,我们开发了极端高压条件下的超导量子干涉仪磁强计,并报告了Im-3m-HS和Fm-3m-LaH(高温超导氢化物两个家族的代表性成员)的特征超导参数。我们分别在HS和LaH中确定了约0.82 T和约0.55 T的下临界场H,以及约20 nm和约30 nm的伦敦穿透深度λ。λ的小值表明两种氢化物中的超流体密度都很高。这些化合物的金兹堡-朗道参数κ约为12 - 20,属于“中等”II型超导体类别,而不是像从其高转变温度T直观预期的那样是硬超导体。