Durin G, Bohn F, Corrêa M A, Sommer R L, Le Doussal P, Wiese K J
Istituto Nazionale di Ricerca Metrologica, Strada delle Cacce 91, 10135 Torino, Italy.
ISI Foundation, Via Alassio 11/c, 10126 Torino, Italy.
Phys Rev Lett. 2016 Aug 19;117(8):087201. doi: 10.1103/PhysRevLett.117.087201. Epub 2016 Aug 15.
We provide the first quantitative comparison between Barkhausen noise experiments and recent predictions from the theory of avalanches for pinned interfaces, both in and beyond mean field. We study different classes of soft magnetic materials, including polycrystals and amorphous samples-which are characterized by long-range and short-range elasticity, respectively-both for thick and thin samples, i.e., with and without eddy currents. The temporal avalanche shape at fixed size as well as observables related to the joint distribution of sizes and durations are analyzed in detail. Both long-range and short-range samples with no eddy currents are fitted extremely well by the theoretical predictions. In particular, the short-range samples provide the first reliable test of the theory beyond mean field. The thick samples show systematic deviations from the scaling theory, providing unambiguous signatures for the presence of eddy currents.
我们首次对巴克豪森噪声实验与近期关于钉扎界面雪崩理论的预测进行了定量比较,涵盖平均场及平均场之外的情况。我们研究了不同类型的软磁材料,包括多晶体和非晶样品,它们分别具有长程和短程弹性,既有厚样品也有薄样品,即存在和不存在涡电流的情况。详细分析了固定尺寸下的时间雪崩形状以及与尺寸和持续时间联合分布相关的可观测量。理论预测对无涡电流的长程和短程样品拟合得都非常好。特别是,短程样品为平均场之外的理论提供了首个可靠检验。厚样品显示出与标度理论的系统性偏差,为涡电流的存在提供了明确的特征。