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首页> 外文期刊>Physical review, B >Vortex matter freezing in Bi2Sr2CaCu2O8 samples with a very dense distribution of columnar defects
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Vortex matter freezing in Bi2Sr2CaCu2O8 samples with a very dense distribution of columnar defects

机译:Bi2Sr2CaCu2O8样品中涡流物质冻结,柱状缺陷分布非常密集

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We show that the dynamical freezing of vortex structures nucleated at diluted densities in Bi2Sr2CaCu2O8 samples with a dense distribution of columnar defects, B similar to 10(-2) B-Phi with B-Phi = 5 kG, results in configurations with liquidlike correlations. We propose a freezing model considering a relaxation dynamics dominated by double-kink excitations driven by the local stresses obtained directly from experimental images. With this model we estimate the relaxation barrier and the freezing temperature. We argue that the low-field frozen vortex structures nucleated in a dense distribution of columnar defects thus correspond to an out-of-equilibrium nonentangled liquid with strongly reduced mobility rather than to a snapshot of a metastable state with divergent activation barriers as, for instance, expected for the Bose-glass phase at equilibrium.
机译:我们显示,在Bi2Sr2CaCu2O8样品中以稀疏密度成核的涡旋结构的动态冻结,具有密集的柱状缺陷分布,B与10(-2)B-Phi相似,B-Phi = 5 kG,导致具有类似液体的相关构型。我们提出一种考虑松弛动力学的冻结模型,该松弛动力学由直接从实验图像获得的局部应力驱动的双扭折激励主导。使用此模型,我们可以估算松弛势垒和冻结温度。我们认为,以密集的圆柱状缺陷分布为核的低场冻结涡旋结构因此对应于流动性大大降低的非平衡非纠缠液体,而不是具有例如不同的激活势垒的亚稳态状态的快照。 ,对于平衡下的玻色玻璃相预期

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