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首页> 外文期刊>Superconductor Science & Technology >Unconventional critical state in YBa2Cu3O7-delta thin films with a vortex-pin lattice fabricated by masked He+ ion beam irradiation
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Unconventional critical state in YBa2Cu3O7-delta thin films with a vortex-pin lattice fabricated by masked He+ ion beam irradiation

机译:YBA2Cu3O7-Delta薄膜中的非常规临界状态,具有通过遮蔽HE +离子束照射制造的涡旋销格子

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Thin superconducting YBa2Cu3O7-delta films are patterned with a vortex-pin lattice consisting of columnar defect regions (CDs) with 180. nm diameter and 300. nm spacing. They are fabricated by irradiation with 75. keV He+ ions through a stencil mask. Peaks of the critical current reveal the commensurate trapping of vortices in domains near the edges of the sample. Upon ramping an external magnetic field, the positions of the critical current peaks are shifted from their equilibrium values to lower magnetic fields in virgin and to higher fields in field-saturated down-sweep curves, respectively. Based on previous theoretical predictions, this irreversibility is interpreted as a nonuniform, terrace-like critical state, in which individual domains are occupied by a constant number of vortices per pinning site. The magnetoresistance, probed at low current densities, is hysteretic and angle dependent and exhibits minima that correspond to the peaks of the critical current. The minima's positions scale with the component of the magnetic field parallel to the axes of the CDs, as long as the tilted vortices can be accommodated within the CDs. This behavior, different from unirradiated films, confirms that the CDs dominate the pinning.
机译:薄的超导YBa2Cu3O7-Delta薄膜用旋涡销晶格与柱状缺陷区域(CD)组成,直径为180.nm和300.nm间距。它们通过用模板面膜用75℃辐射而通过照射制造。临界电流的峰值揭示了样品边缘附近的域中涡流的相称捕获。在斜坡外部磁场时,临界电流峰的位置分别从它们的平衡值移位到处于处女的降低磁场,并分别在现场饱和的下扫曲线中的更高领域。基于先前的理论预测,这种不可逆转性被解释为非均匀的露天型临界状态,其中单个域通过每个钉扎位点的恒定数量的涡流占据。在低电流密度下探测的磁阻是滞后和角度依赖性,并且表现出对应于临界电流峰的最小值。最小值的位置与平行于CD的轴线的磁场的组件缩放,只要倾斜的涡流可以容纳在CD内即可。与未放射的薄膜不同的这种行为确认CDS主导钉扎。

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