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Plastic deformation and vortex dynamics instability of the flux-line lattice in high-temperature superconductors

机译:高温超导体中流线晶格的塑性变形和涡旋动力学不稳定性

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The role of plastic deformations on the vortex dynamics instability of the flux-line lattice (FLL) in high-temperature superconductors is investigated. A model is proposed where elastic instability characterizes the FLL dynamics in a certain domain when the plastic energy of dislocation exceeds the pinning energy in that domain. Under these conditions, the velocity of the flux lines moving in this domain will change. Accordingly, the force-velocity relationship of the vortex lines or, equivalently, the I-V characteristics of the superconductor will experience the same change. A criterion for the appearance of the instability in the FLL is proposed by Delta E-D/E-pin greater than or equal to 1, where Delta E-D is the plastic energy of dislocation and E-pin is the pinning energy of a rigid flux line. When this criterion is applied, the experimental measurements on superconducting YBa2Cu3O7-x thin films were reproduced. These results confirm the importance of plastic deformations in the behaviour of the FLL in superconductors. [References: 16]
机译:研究了塑性变形对高温超导体中磁通线晶格(FLL)涡旋动力学不稳定性的影响。提出了一个模型,其中当位错的塑性能超过该域的钉扎能时,弹性不稳定性表征了该域的FLL动力学。在这些条件下,在此域中移动的磁通线的速度将发生变化。因此,涡旋线的力-速度关系或等效地,超导体的I-V特性将经历相同的变化。 Delta E-D / E-pin大于或等于1提出了FLL中出现不稳定性的标准,其中Delta E-D是位错的塑性能,E-pin是刚性通量线的钉扎能。当应用此标准时,将再现对超导YBa2Cu3O7-x薄膜的实验测量。这些结果证实了塑性变形对于超导体中FLL行为的重要性。 [参考:16]

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