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Imaging soliton dynamics in optical microcavities

机译:在光学微腔中成像孤子动力学

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摘要

Solitons are self-sustained wavepackets that occur in many physical systems. Their recent demonstration in optical microresonators has provided a new platform for the study of nonlinear optical physics with practical implications for miniaturization of time standards, spectroscopy tools, and frequency metrology systems. However, despite its importance to the understanding of soliton physics, as well as development of new applications, imaging the rich dynamical behavior of solitons in microcavities has not been possible. These phenomena require a difficult combination of high-temporal-resolution and long-record-length in order to capture the evolving trajectories of closely spaced microcavity solitons. Here, an imaging method is demonstrated that visualizes soliton motion with sub-picosecond resolution over arbitrary time spans. A wide range of complex soliton transient behavior are characterized in the temporal or spectral domain, including soliton formation, collisions, spectral breathing, and soliton decay. This method can serve as a visualization tool for developing new soliton applications and understanding complex soliton physics in microcavities.
机译:孤子是在许多物理系统中出现的自持波包。他们最近在光学微谐振器中的演示为非线性光学物理研究提供了一个新平台,对时间标准,光谱学工具和频率计量系统的小型化具有实际意义。但是,尽管它对理解孤子物理学以及开发新的应用非常重要,但无法对微腔中孤子的丰富动力学行为进行成像。这些现象需要高温分辨率和长记录长度的艰难结合,才能捕捉到近距离微腔孤子的不断发展的轨迹。在这里,演示了一种成像方法,该方法可以在任意时间范围内以亚皮秒分辨率可视化孤子运动。在时域或谱域中表征了多种复杂的孤子瞬态行为,包括孤子形成,碰撞,谱呼吸和孤子衰减。该方法可以用作开发新孤子应用和了解微腔中复杂孤子物理的可视化工具。

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