Recent Advances and Perspective of Photonic Bound States in the Continuum

Guizhen Xu, Hong-hong Xing, Zhanqiang Xue, Dan Lu, Jinying Fan, Junxing Fan, P. Shum, Longqing Cong
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引用次数: 3

Abstract

Recent advancements in photonic bound states in the continuum (BICs) have opened up exciting new possibilities for the design of optoelectronic devices with improved performance. In this perspective article, we provide an overview of recent progress in photonic BICs based on metamaterials and photonic crystals, focusing on both the underlying physics and their practical applications. The first part of this article introduces 2 different interpretations of BICs, based on far-field interference of multipoles and near-field analysis of topological charges. We then discuss recent research on manipulating the far-field radiation properties of BICs through engineering topological charges. The second part of the article summarizes recent developments in the applications of BICs, including chiral light and vortex beam generation, nonlinear optical frequency conversion, sensors, and nanolasers. Finally, we conclude with a discussion of the potential of photonic BICs to advance terahertz applications in areas such as generation and detection, modulation, sensing, and isolation. We believe that continued research in this area will lead to exciting new advancements in optoelectronics, particularly in the field of terahertz devices.
连续介质中光子束缚态的研究进展与展望
连续介质中光子束缚态(bic)的最新进展为设计具有更高性能的光电器件开辟了令人兴奋的新可能性。本文综述了近年来基于超材料和光子晶体的光子集成电路的研究进展,重点介绍了其物理基础和实际应用。本文第一部分介绍了基于多极子远场干涉和拓扑电荷近场分析的两种不同的bic解释。然后,我们讨论了通过工程拓扑电荷来操纵bic远场辐射特性的最新研究。文章的第二部分总结了bic的最新应用进展,包括手性光和涡旋光束的产生、非线性光学频率转换、传感器和纳米激光器。最后,我们讨论了光子bic在产生和检测、调制、传感和隔离等领域推进太赫兹应用的潜力。我们相信,在这一领域的持续研究将导致光电子学,特别是太赫兹器件领域令人兴奋的新进展。
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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CiteScore
11.40
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