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Effect of pinning and driving force on the metastability effects in weakly pinned superconductors and the determination of spinodal line pertaining to order—disorder transition

机译:钉扎和驱动力对弱钉扎超导体亚稳效应的影响以及与有序-无序跃迁有关的旋节线的确定

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We explore the effect of varying drive on metastability features exhibited by the vortex matter in single crystals of 2H-NbSe_2 and CeRu_2 with varying degree of random pinning. The metastable nature of vortex matter is reflected in the path dependence of the critical current density, which in turn is probed in a contact-less way via AC-susceptibility measurements. The sinusoidal AC magnetic field applied during AC susceptibility measurements appears to generate a driving force on the vortex matter. In a nascent pinned single crystal of 2H-NbSe_2, where the peak effect (PE) pertaining to the order-disorder phenomenon is a sharp first-order-like transition, the supercooling feature below the peak temperature is easily wiped out by the reorganization caused by the AC driving force. In this paper, we elucidate the interplay between the drive and the pinning which can conspire to make the path-dependent AC-susceptibility response of different metastable vortex states appear identical. An optimal balance between the pinning and driving force is needed to view the metastability effects in typically weakly pinned specimen of low temperature superconductors. As one uses samples with larger pinning in order to differentiate the response of different metastable vortex states, one encounters a new phenomenon, viz., the second magnetization peak (SMP) anomaly prior to the PE. Supercooling/superheating can occur across both the PE and the SMP anomalies and both of these are known to display non-linear characteristics as well. Interplay between the path dependence in the critical current density and the non-linearity in the electromagnetic response determine the metastability effects seen in the first and the third harmonic response of the AC susceptibility across the temperature regions of the SMP and the PE. The limiting temperature above which metastability effects cease can be conveniently located in the third harmonic data, and the observed behavior can be rationalized within the Bean's critical state model. A vortex phase diagram showing different vortex phases for a typically weakly pinned specimen has been constructed via the AC susceptibility data in a crystal of 2H-NbSe_2 which shows the SMP and the PE anomalies. The phase space of coexisting weaker and stronger pinned regions has been identified. It can be bifurcated into two parts, where the order and disorder dominate, respectively. The former part continuously connects to the reentrant disordered vortex phase pertaining to the small bundle pinning regime, where the vortices are far apart, interaction effects are weak and the polycrystalline form of flux line lattice prevails.
机译:我们探讨了变化的驱动对2H-NbSe_2和CeRu_2单晶中旋涡物质所表现出的亚稳态特征的影响,并且随机钉扎的程度也不同。涡流物质的亚稳态性质反映在临界电流密度的路径依赖性上,而临界电流密度又通过交流磁化率测量以非接触方式进行探测。在交流磁化率测量期间施加的正弦交流磁场似乎会在旋涡物质上产生驱动力。在新生的2H-NbSe_2固定单晶中,与无序现象有关的峰效应(PE)是一个尖锐的一阶过渡,其峰顶以下的过冷特性很容易因重组而消失。由交流驱动力。在本文中,我们阐明了驱动器和销钉之间的相互作用,这可以共同使不同亚稳态涡旋状态的与路径相关的交流磁化率响应看起来相同。需要钉扎力和驱动力之间的最佳平衡,以观察低温超导体通常弱钉扎试样中的亚稳效应。当使用具有较大钉扎的样本来区分不同的亚稳态涡旋状态时,人们会遇到一种新现象,即PE之前的第二个磁化峰(SMP)异常。 PE和SMP异常都可能发生过冷/过热,并且众所周知,这两种异常也都显示非线性特性。临界电流密度中的路径依赖性与电磁响应中的非线性之间的相互作用决定了在SMP和PE的温度区域中,交流磁化率的一次和三次谐波响应中会出现亚稳态效应。可以在三次谐波数据中方便地确定亚稳态影响停止的极限温度,并且可以在Bean的临界状态模型中合理化观察到的行为。通过在2H-NbSe_2晶体中显示出SMP和PE异常的AC磁化率数据,构建了显示典型的弱钉扎样品的不同旋涡相的旋涡相图。已经确定了较弱和较强的固定区域共存的相空间。它可以分为两部分,分别由顺序和无序主导。前一部分连续连接到与小束钉扎状态有关的折返无序涡旋相,其中涡旋相距较远,相互作用作用较弱,并且通量线晶格的多晶形式占优势。

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