论文标题

超导涡流晶格中的超均匀性无序

Disordered hyperuniformity in superconducting vortex lattices

论文作者

Benito-Llorens, Jose, Guillamón, Isabel, García-Serrano, Ismael, Córdoba, Rosa, Sesé, Javier, De Teresa, José María, Ibarra, M. Ricardo, Vieira, Sebastián, Ortuño, Miguel, Suderow, Hermann

论文摘要

占据随机晶格的位点的颗粒在所有长度尺度上都存在密度波动。已经提出,增加颗粒间相互作用会减少远距离密度波动,从而偏离随机行为。这导致结构因子的幂定律以及可用于表征随机性的偏差的数量方差,最终导致过度均匀性无序。目前尚不清楚如何将密度波动与无序超一样系统中的相互作用联系起来。超导涡流之间的相互作用非常敏感,对涡旋固定,对超导体的晶体结构和磁场的值非常敏感。这会产生不同程度的混乱程度的晶格。在这里,我们研究了几种超导化合物(共同掺杂的NBSE $ _2 $,LISEEAS和CAKFE $ _4 $ AS $ _4 $)的涡旋晶格,在两种基于W的薄膜中,一种具有强大的纳米结构钉(W-FILM-1)(W-FILM-1)(w-film-1),另一个具有弱或几乎是缺陷的固定型(W-filmning(W-filmning)(W-Filmning)(W-Film-2)。我们计算每种情况的结构因子和数量方差,并与部分固定的粒子相互作用集进行计算。我们发现,当固定克服相互作用并表明密度波动的抑制确实与相互作用的存在相关时,会出现随机密度波动。此外,我们发现在一个单个框架中,我们可以描述所有研究的涡旋晶格,该框架包括从超均匀性到随机分布的连续偏差,而在增加了相对于干预剂相互作用的固定强度。

Particles occupying sites of a random lattice present density fluctuations at all length scales. It has been proposed that increasing interparticle interactions reduces long range density fluctuations, deviating from random behaviour. This leads to power laws in the structure factor and the number variance that can be used to characterize deviations from randomness which eventually lead to disordered hyperuniformity. It is not yet fully clear how to link density fluctuations with interactions in a disordered hyperuniform system. Interactions between superconducting vortices are very sensitive to vortex pinning, to the crystal structure of the superconductor and to the value of the magnetic field. This creates lattices with different degrees of disorder. Here we study disordered vortex lattices in several superconducting compounds (Co-doped NbSe$_2$, LiFeAs and CaKFe$_4$As$_4$) and in two amorphous W-based thin films, one with strong nanostructured pinning (W-film-1) and another one with weak or nearly absent pinning (W-film-2). We calculate for each case the structure factor and number variance and compare to calculations on an interacting set of partially pinned particles. We find that random density fluctuations appear when pinning overcomes interactions and show that the suppression of density fluctuations is indeed correlated to the presence of interactions. Furthermore, we find that we can describe all studied vortex lattices within a single framework consisting of a continous deviation from hyperuniformity towards random distributions when increasing the strength of pinning with respect to the intervortex interaction.

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