Recent Advancement on the Excitonic and Biexcitonic Properties of Low-Dimensional Semiconductors

A. Armǎşelu
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引用次数: 0

Abstract

Knowing excitonic and biexcitonic properties of low-dimensional semiconductors systems is extremely important for the discovery of new physical effects and for the development of novel optoelectronics applications. This review work furnishes an interdisciplinary analysis of the fundamental features of excitons and biexcitons in two-dimensional semiconductor structures, one-dimensional semiconductor structures, and zero-dimensional (0D) semiconductor structures. There is a focus on spectral and dynamical properties of excitons and biexcitons in quantum dots (QDs). A study of the recent advances in the field is given, emphasizing the latest theoretical results and latest experimental methods for probing exciton and biexciton dynamics. This review presents an outlook on future applications of engineered multiexcitonic states including the photovoltaics, lasing, and the utilization of QDs in quantum technologies.
低维半导体的激子和双激子特性研究进展
了解低维半导体系统的激子和双激子性质对于发现新的物理效应和开发新的光电子应用非常重要。本综述对二维半导体结构、一维半导体结构和零维半导体结构中激子和双激子的基本特征进行了跨学科的分析。对量子点中激子和双激子的光谱和动力学特性进行了研究。介绍了该领域的最新进展,重点介绍了探测激子和双激子动力学的最新理论成果和最新实验方法。本文综述了工程多激子态的未来应用,包括光电、激光和量子点在量子技术中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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