量子点
激发态
激发
特征向量
噪音(视频)
白噪声
物理
统计物理学
高斯噪声
人口
掺杂剂
加性高斯白噪声
最大化
凝聚态物理
计算物理学
量子力学
数学
兴奋剂
统计
计算机科学
数学优化
人口学
算法
人工智能
社会学
图像(数学)
作者
Swarnab Datta,Sk. Md. Arif,Debi Roy,Manas Ghosh
标识
DOI:10.1002/pssb.202200216
摘要
Present investigation rigorously explores the time‐average excitation rate (TAER) of ground‐state electronic population of GaAs quantum dot (QD) to the excited eigenstates. The QD confinement potential contains Gaussian impurity (the dopant) and Gaussian white noise (GWN). GWN can be categorized as either additive or multiplicative depending upon its way of attachment to the doped QD. The excitation occurs as soon as the noise strength begins fluctuating with time in periodic or random manner. The study highlights the coupled influence of the varying physical quantity, presence/absence of noise, the mode of attachment of noise to QD, and the nature of time‐fluctuation of the noise strength (periodic/random), and finally harnesses and tailors the features of the TAER profiles. The TAER plots unveil steady rise, steady fall, maximization (linked with the emergence of large nonlinear optical response), minimization, and saturation (linked with dynamic freezing). The findings appear to be significant in the practical usage of QD‐based devices.
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