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Collective dynamics of Josephson vortices in intrinsic Josephson junctions: exploration of in-phase locked superradiant vortex flow states

机译:本征约瑟夫森结中约瑟夫森涡的集体动力学:同相锁定超辐射涡流状态的探索

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In order to explore the "superradiant" condition for the moving Josephson vortices in intrinsic Josephson junctions (IJJs), we perform large scale numerical simulations for the IJJs with realistic dimensions under a layer-parallel magnetic field (H > 1T). Three clear step-like structures, at which we find structural transitions in moving flux-line lattice, are observed in the I-V curve. The flow states of the Josephson vortices are classified into four regions, from I to IV, according to the applied current or voltage values. The superradiant state, in which moving Josephson vortices forms the in-phase rectangular lattice, is stabilized in region III. In the superradiant state, the power spectra of excited electric fields show very sharp peak structures and the power at the peak position is very large. From the eigen mode analysis, we show that the step-like structure in the I-V curve corresponding to structural transitions in moving lattices originates from the resonances between the transverse Josephson plasma modes and the motion of the Josephson vortices. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 24]
机译:为了探索固有约瑟夫逊结(IJJs)中移动的约瑟夫森涡旋的“超辐射”条件,我们在层平行磁场(H> 1T)下对具有实际尺寸的IJJs进行了大规模数值模拟。在I-V曲线中观察到三个清晰的阶梯状结构,在该处我们可以找到运动的通量线晶格中的结构过渡。根据施加的电流或电压值,约瑟夫森涡流的流动状态从I到IV分为四个区域。移动的约瑟夫森涡旋形成同相矩形晶格的超辐射状态在区域III中稳定。在超辐射状态下,激发电场的功率谱显示出非常尖锐的峰结构,并且在峰位置处的功率非常大。通过本征模分析,我们发现,I-V曲线中与移动晶格中的结构转变相对应的阶梯状结构源于横向约瑟夫森等离子体模式与约瑟夫森涡旋运动之间的共振。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:24]

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