论文标题
平面疾病培养基中弹性系统过度均匀性的各向异性抑制
Anisotropic suppression of hyperuniformity of elastic systems in media with planar disorder
论文作者
论文摘要
由于其独特的物理特性,无序的超平均材料具有消失的长波长密度波动,引起了人们的注意。在这些系统中,即使系统像液体一样无序,大规模密度波动被强烈抑制,即使系统可能会被无序。然而,超均匀性可能会受到不同类型的猝灭障碍的影响,在宿主培养基中,成分成分的宿主培养基中存在。在这里,我们在超导体中使用涡流物质作为模型弹性系统来研究平面相关性疾病如何影响弱点疾病样品中原来成核结构。缺陷的平面以各向异性的方式抑制过度均匀性:而在横向方向上,缺陷的长波长密度波动是不存在的,在纵向方向上,它们较小,并且系统最终可以恢复过度均匀性,以获得足够厚的样品。我们的发现强调了在寻找新型超平均材料时考虑混乱和厚度依赖性尺寸跨界的性质的必要性。
Disordered hyperuniform materials with vanishing long-wavelength density fluctuations are attracting attention due to their unique physical properties. In these systems, the large-scale density fluctuations are strongly suppressed as in a perfect crystal, even though the system can be disordered like a liquid. Yet, hyperuniformity can be affected by the different types of quenched disorder unavoidably present in the host medium where constituents are nucleated. Here, we use vortex matter in superconductors as a model elastic system to study how planar correlated disorder impacts the otherwise hyperuniform structure nucleated in samples with weak point disorder. Planes of defects suppress hyperuniformity in an anisotropic fashion: While in the transverse direction to defects the long-wavelength density fluctuations are non-vanishing, in the longitudinal direction they are smaller and the system can eventually recover hyperuniformity for sufficiently thick samples. Our findings stress the need of considering the nature of disorder and thickness-dependent dimensional crossovers in the search for novel hyperuniform materials.