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首页> 外文期刊>Physical review letters >Anomalous Double Peak Structure in Superconductor/Ferromagnet Tunneling Density of States
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Anomalous Double Peak Structure in Superconductor/Ferromagnet Tunneling Density of States

机译:超导体/铁磁体隧穿密度中的异常双峰结构

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摘要

We have experimentally investigated the density of states (DOS) in Nb/Ni (S/F) bilayers as a function of Ni thickness, d_F. Our thinnest samples show the usual DOS peak at ±Δ_0, whereas intermediate-thickness samples have an anomalous "double-peak" structure. For thicker samples (d_F ≥ 3.5 nm), we see an inverted DOS, which has previously only been reported in superconductor or weak-ferromagnet structures. We analyze the data using the self-consistent nonlinear Usadel equation and find that we are able to quantitatively fit the features at ± Δ_0-in particular the thickness at which the inversion occurs-only if we include a large amount of spin-orbit scattering in the model. Interestingly, we are unable to reproduce the subgap structure through the addition of any parameter(s). Therefore, the observed anomalous subgap structure represents new physics beyond that contained in the present Usadel theory.
机译:我们已经实验研究了Nb / Ni(S / F)双层中的态密度(DOS)作为Ni厚度d_F的函数。我们最薄的样品显示出通常的DOS峰在±Δ_0处,而中等厚度的样品则具有异常的“双峰”结构。对于较厚的样品(d_F≥3.5 nm),我们看到一个倒置的DOS,以前仅在超导体或弱铁磁体结构中才报道过。我们使用自洽非线性Usadel方程对数据进行分析,发现仅在包含大量自旋轨道散射的情况下,我们才能定量拟合±Δ_0处的特征-特别是发生反转的厚度。该模型。有趣的是,我们无法通过添加任何参数来重现子间隙结构。因此,观察到的异常亚隙结构代表了新的物理学,超越了当前的阿萨德尔理论所包含的物理学。

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