首页> 外文会议>Conference on Noise as a Tool for Studying Materials Jun 2-4, 2003 Santa Fe, New Mexico, USA >Metal-insulator transition and glassy behavior in two-dimensional electron systems
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Metal-insulator transition and glassy behavior in two-dimensional electron systems

机译:二维电子系统中的金属-绝缘体转变和玻璃态行为

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Studies of low-frequency resistance noise demonstrate that glassy freezing occurs in a two-dimensional electron system in silicon in the vicinity of the metal-insulator transition (MIT). The width of the metallic glass phase, which separates the 2D metal and the (glassy) insulator, depends strongly on disorder, becoming extremely small in high-mobility (low-disorder) samples. The glass transition is manifested by a sudden and dramatic slowing down of the electron dynamics, and by a very abrupt change to the sort of statistics characteristic of complicated multistate systems. In particular, the behavior of the second spectrum, an important fourth-order noise statistic, indicates the presence of long-range correlations between fluctuators in the glassy phase, consistent with the hierarchical picture of glassy dynamics.
机译:低频电阻噪声的研究表明,玻璃态冻结发生在金属-绝缘体转变(MIT)附近的硅中的二维电子系统中。将2D金属和(玻璃状)绝缘体分隔开的金属玻璃相的宽度在很大程度上取决于无序度,在高迁移率(低乱序)样品中其变得非常小。玻璃化转变表现为电子动力学的突然和急剧的减慢,以及复杂多态系统的统计特性的突然变化。特别地,第二频谱的行为是重要的四阶噪声统计数据,表明在玻璃态阶段的涨落之间存在长期相关性,与玻璃动力学的层次图一致。

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