Current noise in stationary conditions in MgB2 thin films

C. Gandini, A. Masoero, V. Andreoli, E. Monticone
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Abstract

The present paper concerns the analysis of the current noise taken in stationary conditions at different stages of the transition process in MgB2 thin films. The specimen, during its transition, reaches an intermediate state characterized by resistive and superconductive regions. Except in the case where the specimen resistance is lower than about one tenth of its value at the end of the transition, both the amplitude and frequency behavior of the relative noise power spectra remain rigorously constant at different stages of the transition curve, until the transition is completed and the fully normal state is achieved [1]. A different picture appears at the beginning of the transition, where the specimen resistance increases slowly with the temperature, before reaching the steepest part of the transition curve. Contrarily to the previous case, now the specimen reaches a mixed state, and the noise is produced by depinning and motion of fluxoids. Actually the amplitude of the reduced noise power spectrum becomes very sensitive to both to the magnetic field and the specimen resistance, and is largely dominant when this resistance tends to zero.
静止条件下MgB2薄膜中的电流噪声
本文分析了MgB2薄膜在过渡过程中不同阶段的稳态条件下的电流噪声。在过渡过程中,试样达到以电阻区和超导区为特征的中间状态。除了在过渡结束时试件电阻低于其值的十分之一的情况外,相对噪声功率谱的幅值和频率行为在过渡曲线的不同阶段都保持严格恒定,直到过渡完成并达到完全正常状态[1]。在过渡开始时出现了不同的画面,在到达过渡曲线最陡峭的部分之前,试件电阻随温度缓慢增加。与前一种情况相反,此时试样达到混合状态,噪声是由脱屑和流体运动产生的。实际上,降噪功率谱的振幅对磁场和试样电阻都非常敏感,并且在该电阻趋于零时占主导地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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