首页> 外文期刊>The European physical journal, B. Condensed matter physics >Nonlinear-driven instability of dynamical plasma in solids: Emergence of spatially self-organized order and chaotic-like behavior
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Nonlinear-driven instability of dynamical plasma in solids: Emergence of spatially self-organized order and chaotic-like behavior

机译:固体动力等离子体的非线性驱动不稳定性:空间自组织有序和混沌行为的出现

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摘要

We analyze in detail the nonlinear kinetics of a carrier system in a photoinjected plasma in semiconductors under the action of constant illumination with ultraviolet light. We show that the spatially homogeneous steady-state becomes unstable, and a charge density wave emerges after a critical intensity of the incident radiation is achieved. It is shown that this instability can only follow in doped p-type materials. In bulk systems the critical intensity was found to be too high making the phenomenon not observable under realistic experimental conditions. However, a more efficient electron excitation can be obtained in low dimensional p-type systems, like some molecular and biological polymers, where the interaction amy follow by chemical interaction with the medium. We show that for intensities beyond the critical threshold an increasing number of modes provide further contributions (subharmonics) to the space inhomogeneity. It is conjectured that this process could lead the system to display chaotic-like behavior.
机译:我们详细分析了在恒定照射紫外线的作用下,半导体中光注入等离子体中载流子系统的非线性动力学。我们表明,空间均匀的稳态变得不稳定,并且在达到入射辐射的临界强度后出现电荷密度波。结果表明,这种不稳定性只能发生在掺杂的p型材料中。在散装系统中,发现临界强度太高,使得在实际实验条件下无法观察到该现象。但是,在低维p型系统(如某些分子和生物聚合物)中可以获得更有效的电子激发,其中相互作用主要是与介质发生化学相互作用。我们表明,对于超过临界阈值的强度,越来越多的模式为空间不均匀性提供了进一步的贡献(次谐波)。据推测,该过程可能导致系统显示出类似混沌的行为。

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