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Glass Transitions in Monodisperse Cluster-Forming Ensembles: Vortex Matter in Type-1.5 Superconductors

机译:单分散簇形成集合中的玻璃过渡:1.5型超导体中的涡旋物质

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At low enough temperatures and high densities, the equilibrium configuration of an ensemble of ultrasoft particles is a self-assembled, ordered, cluster crystal. In the present Letter, we explore the out-of-equilibrium dynamics for a two-dimensional realization, which is relevant to superconducting materials with multiscale intervortex forces. We find that, for small temperatures following a quench, the suppression of the thermally activated particle hopping hinders the ordering. This results in a glass transition for a monodispersed ensemble, for which we derive a microscopic explanation in terms of an "effective polydispersity" induced by multiscale interactions. This demonstrates that a vortex glass can form in clean systems of thin films of "type-1.5" superconductors. An additional setup to study this physics can be layered superconducting systems, where the shape of the effective vortex-vortex interactions can be engineered.
机译:在足够低的温度和高密度时,Ultrasoft颗粒的整体的平衡配置是自组装,有序的簇晶体。在本信中,我们探讨了二维实现的均衡动态,这与具有多尺度间隔力的超导材料相关。我们发现,对于淬火后的小温度,抑制热活化的粒子跳跃阻碍了排序。这导致用于单分散的集合的玻璃化转变,我们在多尺度相互作用诱导的“有效多分散性”方面获得了微观解释。这表明涡流玻璃可以在“型-1.5”超导体的薄膜的清洁系统中形成。研究该物理学的额外设置可以是层状超导系统,其中可以设计有效涡旋涡流相互作用的形状。

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  • 来源
    《Physical review letters》 |2017年第8期|067001.1-067001.5|共5页
  • 作者单位

    Univ Strasbourg icFRC IPCMS ISIS UMR 7504 UMR 7006 F-67000 Strasbourg France|CNRS F-67000 Strasbourg France;

    Univ Strasbourg icFRC IPCMS ISIS UMR 7504 UMR 7006 F-67000 Strasbourg France|CNRS F-67000 Strasbourg France;

    Univ Innsbruck IQOQI A-6020 Innsbruck Austria|Univ Innsbruck Inst Theoret Phys A-6020 Innsbruck Austria;

    Natl Inst Theoret Phys ZA-7600 Stellenbosch South Africa|Univ Stellenbosch Inst Theoret Phys ZA-7600 Stellenbosch South Africa;

    KTH Royal Inst Technol Dept Theoret Phys SE-10691 Stockholm Sweden|KTH Royal Inst Technol Ctr Quantum Mat SE-10691 Stockholm Sweden;

    Univ Strasbourg icFRC IPCMS ISIS UMR 7504 UMR 7006 F-67000 Strasbourg France|CNRS F-67000 Strasbourg France;

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