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Noise and hysteresis in charged stripe, checkerboard, and clump forming systems

机译:带电条纹,棋盘和团块形成系统中的噪音和滞后

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We numerically examine noise fluctuations and hysteresis phenomena in charged systems that form stripe, labyrinth or clump patterns. It is believed that charge inhomogeneities of this type arise in two-dimensional (2D) quantum hall systems and in electron crystal structures in high temperature superconductors, while related patterns appear in manganites and type-I superconductors. Recent noise and transport experiments in two-dimensional electron gases and high temperature superconducting samples revealed both 1/f~α noise signatures and hysteretic phenomena. Using numerical simulations we show that 1/f~α noise fluctuations and hysteresis are generic features that occur in charge systems which undergo a type of phase separation that results in stripes, clumps, checkerboards, or other inhomogeneous patterns. We find that these systems exhibit 1/f~α fluctuations with 1.2 < α < 1.8, rather than simple 1/f or 1/f~2 fluctuations. We also propose that the 2D metal insulator transition may be associated with a clump electron glass phase rather than a Wigner glass phase.
机译:我们在形成条纹,迷宫或丛林模式的带电系统中进行数字检查噪声波动和滞后现象。据信这种类型的电荷不均匀性在高温超导体中的二维(2D)量子霍尔系统和电子晶体结构中出现,而相关图案出现在锰铁和I型超导体中。最近在二维电子气体和高温超导样品中的噪声和运输实验显示出1 / F〜α噪声签名和滞后现象。使用数值模拟,我们表明,1 / F〜α噪声波动和滞后是在充电系统中发生的通用特征,该电荷系统发生在一系列相分离中,导致条纹,团块,棋盘或其他不均匀图案。我们发现这些系统具有1.2 <α<1.8的1 / f〜α波动,而不是简单的1 / f或1 / f〜2波动。我们还提出了2D金属绝缘体转变可以与丛电子玻璃相而不是Wigner玻璃相的相关联。

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