内封面:用于集成量子光子电路的耦合微柱-波导系统的数值研究(Adv. Quantum technology . 12/2024)

IF 4.4 Q1 OPTICS
Léo J. Roche, Fridtjof Betz, Yuhui Yang, Imad Limame, Ching-Wen Shih, Sven Burger, Stephan Reitzenstein
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引用次数: 0

摘要

这张封面图片是一个量子光子器件概念的3D渲染图,该概念由一个低语画廊模式的微激光耦合到一个脊波导组成。这种装置有可能用于共振激发单光子发射器,然后将其集成到脊波导中。这允许在集成量子光子电路的背景下,在片上和按需产生单光子。在2400195号文章中,Stephan Reitzenstein及其同事使用有限元模拟研究了腔体的共振质量及其耦合效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Inside Front Cover: Numerical Investigation of a Coupled Micropillar - Waveguide System for Integrated Quantum Photonic Circuits (Adv. Quantum Technol. 12/2024)

Inside Front Cover: Numerical Investigation of a Coupled Micropillar - Waveguide System for Integrated Quantum Photonic Circuits (Adv. Quantum Technol. 12/2024)

This cover image is the 3D rendering of a quantum photonic device concept consisting of a whispering gallery mode microlaser coupled to a ridge waveguide. Such a device could potentially be used to resonantly excite a single-photon emitter that is subsequently integrated into a ridge waveguide. This allows for on-chip and on-demand generation of single photons in the context of integrated quantum photonic circuits. In article number 2400195, Stephan Reitzenstein and co-workers use finite element simulations to investigate the resonance quality of the cavity and its coupling efficiency.

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