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1/f flux noise in low-T_c SQUIDs due to superparamagnetic phase transitions in defect clusters

机译:低T_C鱿鱼的1 / F噪声由于缺陷簇中的超顺磁相过渡

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摘要

It is shown here that 1/f(alpha) flux noise in conventional low-T-c SQUIDs is a result of low temperature superparamagnetic phase transitions in small clusters of strongly correlated color center defects. The spins in each cluster interact via long-range ferromagnetic interactions. Due to its small size, the cluster behaves like a random-telegraphic macrospin when transitioning to the superparamagnetic phase. This results in 1/f(alpha) noise when ensemble averaged over a random distribution of clusters. This model is self-consistent and explains all related experimental results which includes alpha similar to 0.8 independent of system size. The experimental flux-inductance-noise spectrum is explained through three-point correlation calculations and time-reversal symmetry-breaking arguments. Also, unlike the flux noise, it is shown why the second-spectrum inductance noise is inherently temperature dependent due to the fluctuation-dissipation theorem. A correlation-function calculation methodology using Ising-Glauber dynamics was key for obtaining these results.
机译:这里示出了传统的低T-C鱿鱼中的1 / f(α)磁通噪声是小簇中的低温超顺磁相过渡的结果强烈相关的色彩中心缺陷。每个集群中的旋转通过远程铁磁交互进行交互。由于其尺寸小,群集在转换到超顺磁相时的随机电报MacroSpin就像。当在集群的随机分布上平均时,这导致1 / f(alpha)噪声。该模型是自我一致的,解释了所有相关的实验结果,包括与系统尺寸无关的0.8类似的alpha。通过三点相关性计算和时间反转对称性参数来解释实验磁通电感噪声谱。此外,与磁通噪声不同,示出了为什么由于波动耗散定理,第二频谱电感噪声具有固有的温度。使用ising-glauber动态的相​​关函数计算方法是获得这些结果的关键。

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