Self-organized structures induced by external white noise and nanosized levels of their formation in the non-crystalline As-S(Se) semiconductor systems

M. Mar’yan, N. Yurkovych, V. Šebeň
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引用次数: 1

Abstract

Discussed in this paper are the singularity and self-organizing effect of instability and randomness under the influence of external white noise on formation of non-crystalline materials. The random nature of the receiving medium together with the disorganizing effect was found to be capable to initiate formation of qualitatively new self-organized structures in non-crystalline solids. Also analyzed in the paper is the effect of a random temperature field applied to the melt during the cooling process in non-crystalline As-S(Se) semiconductor systems. The conditions for a non-crystalline system in a fluctuating external environment to adjust its properties to the average properties of the environment and to correspond to the deterministic case were identified. Furthermore, the conditions for non-additive reaction of the system to a random environment and formation of a new mode of energy conversion in the self-organized structure at the nanoscale level are determined. The spectrum of the structures created in this way is more diverse as compared to the spectrum corresponding to respective deterministic conditions.
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非晶As-S(Se)半导体系统中外部白噪声诱导的自组织结构及其纳米级形成
本文讨论了在外部白噪声的影响下,不稳定性和随机性的奇异性和自组织效应对非晶体材料形成的影响。发现接收介质的随机性质以及无序效应能够在非结晶固体中引发新的定性自组织结构的形成。本文还分析了在非晶As-S(Se)半导体体系冷却过程中施加随机温度场对熔体的影响。确定了在波动的外部环境下,非晶体体系将其性质调整到环境的平均性质并与确定性情况相对应的条件。在此基础上,确定了该体系与随机环境发生非加性反应的条件,并在纳米级自组织结构中形成了一种新的能量转换模式。与对应于各自确定性条件的光谱相比,以这种方式创建的结构的光谱更加多样化。
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