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Strong shift of the irreversibility line in high-T-c superconductors upon vortex shaking with an oscillating magnetic field

机译:用振荡磁场涡旋涡旋涡旋时的不可逆线在高T-C超导体中的强烈移位

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Torque magnetometry is a powerful method for probing superconducting anisotropy in the mixed state. In order to use the three-dimensional anisotropic London model to analyze torque data, the vortex lattice must be in a reversible state, a state normally restricted to a narrow range close to the upper critical-field boundary H-c2(T) because of large pinning effects that set in at lower temperatures T. We show that the application of an additional oscillating magnetic field perpendicular to the main field B leads to a fast depinning of the vortex lattice. This vortex-shaking process dramatically extends the reversible domain in the (H,T) phase diagram, and thus the range in which torque investigations can be made. [References: 29]
机译:扭矩磁体是一种强大的方法,用于探测混合状态的超导各向异性。 为了使用三维各向异性伦敦模型来分析扭矩数据,涡流晶格必须处于可逆状态,因此状态通常限制在靠近上部临界领域边界H-C2(T)的窄范围内 在较低温度下设定的大的钉扎效果。我们表明垂直于主田B垂直的额外振荡磁场的应用导致涡流晶格的快速脱落。 该涡旋振动过程显着延伸到(H,T)相图中的可逆域,因此可以进行扭矩调查的范围。 [参考:29]

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