论文标题

集成光学Kerr频率梳的新兴材料系统

Emerging material systems for integrated optical Kerr frequency combs

论文作者

Kovach, Andre, Chen, Dongyu, He, Jinghan, Choi, Hyungwoo, Dogan, Adil Han, Ghasemkhani, Mohammadreza, Taheri, Hossein, Armani, Andrea M.

论文摘要

KERR频率梳子的实验实现代表了材料,物理和工程学研究的融合,这种共生关系继续为当今的梳理创新提供了基础。最初开发基于空腔的频率梳子的焦点依赖于现有的微孔架体系结构和经典光学材料,但近年来,这种趋势受到了破坏。本文回顾了使用谐振腔的频率梳子产生的最新成就,将它们置于该领域的更广泛的历史环境中。在展示了公认的材料系统和设备设计之后,检查了新兴的材料和设备体系结构。具体而言,将非常规的材料系统以及具有量身定制的分散配置文件和改进的梳子性能的非典型设备设计与当前的最新状态进行了比较。评估了基于空腔的频率梳子领域的剩余挑战和未来前景。

The experimental realization of a Kerr frequency comb represented the convergence of research in materials, physics, and engineering, and this symbiotic relationship continues to underpin efforts in comb innovation today. While the initial focus developing cavity-based frequency combs relied on existing microresonator architectures and classic optical materials, in recent years, this trend has been disrupted. This paper reviews the latest achievements in frequency comb generation using resonant cavities, placing them within the broader historical context of the field. After presenting well-established material systems and device designs, the emerging materials and device architectures are examined. Specifically, the unconventional material systems as well as atypical device designs that have enabled tailored dispersion profiles and improved comb performance are compared to the current state of art. The remaining challenges and future outlook for the field of cavity-based frequency combs is evaluated.

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