论文标题
具有相关障碍的磁性超材料
Magnetic metamaterials with correlated disorder
论文作者
论文摘要
我们在磁性超材料的简化模型中检查了磁能的运输,该模型由一个维式旋转谐振器的一维阵列组成,在谐振频率中存在相关障碍的情况下。平均参与率(PR)的计算表明,平均而言,相关疾病系统的模式与不相关的情况相比,相关障碍系统的本地化较小。相关案例最初局部磁激励的均方根位移的数值计算表明,与不相关的(类似于安德森的情况)有很大的偏离。长期的渐近fit $ \ langle n^2 \ rangle \ sim t^α$表明,对于不相关的系统$α\ sim 0 $,而对于相关的情况$α> 0 $,跨越了从本地化到超级延误行为的整个行为。平面波跨单个磁化二聚体的透射系数揭示了无序强度 - 磁性耦合空间中定义明确的区域的存在,其中某些波形的单位传输是可能的。根据Dunlap等人的随机二聚体模型(RDM),这意味着一定程度的迁移率。相关SRR系统和RDM的迁移率之间的比较表明,RDM模型在低疾病下具有更好的迁移率,而我们的相关SRR模型在中等和大型疾病下显示出更好的迁移率。
We examine the transport of magnetic energy in a simplified model of a magnetic metamaterial, consisting of a one-dimensional array of split-ring resonators, in the presence of correlated disorder in the resonant frequencies. The computation of the average participation ratio (PR) reveals that on average, the modes for the correlated disorder system are less localized than in the uncorrelated case. The numerical computation of the mean square displacement of an initially localized magnetic excitation for the correlated case shows a substantial departure from the uncorrelated (Anderson-like) case. A long-time asymptotic fit $\langle n^2\rangle \sim t^α$ reveals that, for the uncorrelated system $α\sim 0$, while for the correlated case $α>0$, spanning a whole range of behavior ranging from localization to super-diffusive behavior. The transmission coefficient of a plane wave across a single magnetic dimer reveals the existence of well-defined regions in disorder strength-magnetic coupling space, where unit transmission for some wavevector(s) is possible. This implies, according to the random dimer model (RDM) of Dunlap et al., a degree of mobility. A comparison between the mobilities of the correlated SRR system and the RDM shows that the RDM model has better mobility at low disorder while our correlated SRR model displays better mobility at medium and large disorder.