首页> 外文会议>Conference on Noise as a Tool for Studying Materials Jun 2-4, 2003 Santa Fe, New Mexico, USA >Current noise in high Tc granular superconductors under non-stationary conditions of current and magnetic field
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Current noise in high Tc granular superconductors under non-stationary conditions of current and magnetic field

机译:电流和磁场非平稳条件下高Tc颗粒超导体中的电流噪声

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We present a set of experimental results concerning the power spectrum of current noise, detected on a granular high Tc superconductor submitted either to a slowly varying magnetic field or to a varying current intensity. Experiments were performed on a YBCO specimen suitably treated in order to weaken the weak links without affecting the oxygen content of grains. The weakening of the intergrain region allowed the use of very small magnetic fields and currents to induce the resistive transition of the specimen and to observe current noise. The induced noise is of the 1/f~2 type and will be interpreted in terms of two different models. One of the model is based on the enhancement of the noise due to the clustering of the resistive transition of the weak links, produced by correlation effects related to the strong nonlinearity of their Josephson type I-V characteristics. This model has been the object of a computer simulation based on a 3D-network of Josephson-like elements and seems suitable to explain the noise produced by current variation. The second model explains the excess noise as produced by discontinuous penetration of the magnetic flux inside the intergrain region. This discontinuity is related to the field screening effect of rings made of several superconducting weak links connecting different grains, which are alternatively broken and restored by the current induced during flux variation, and seems suitable to explain the larger noise produced by a varying magnetic field.
机译:我们提出了一组有关电流噪声功率谱的实验结果,该结果在呈缓慢变化的磁场或变化的电流强度的粒状高Tc超导体上检测到。在经过适当处理的YBCO样品上进行了实验,以弱化薄弱环节而不影响晶粒的氧含量。晶粒间区域的减弱允许使用很小的磁场和电流来诱发样品的电阻转变并观察电流噪声。感应噪声为1 / f〜2类型,将根据两种不同的模型进行解释。其中一种模型是基于噪声的增强,该噪声是由于弱链接的电阻性跃迁的聚类而引起的,该弱链接是由与它们的约瑟夫森I-V型特性的强非线性有关的相关效应所产生的。该模型已成为基于约瑟夫森式元素3D网络的计算机仿真的对象,似乎很适合解释电流变化产生的噪声。第二个模型解释了由于晶粒间区域内部的磁通量不连续渗透而产生的多余噪声。这种不连续性与由连接不同晶粒的几个超导弱链接制成的环的场屏蔽效应有关,这些环交替地被通量变化过程中感应的电流破坏和恢复,似乎适合解释磁场变化产生的较大噪声。

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