论文标题
双模式微孔子作为直接访问八度的耗散kerr soliton的直接访问
Dual-mode microresonators as straightforward access to octave-spanning dissipative Kerr solitons
论文作者
论文摘要
Kerr Soliton频率梳子是连贯光的革命性紧凑型标尺,从精度计量学到量子信息技术允许应用。通用,可靠和低成本的孤子微重梳源是这些应用的关键。在这项工作中,我们彻底提出了一种创新的设计策略,用于实现具有两个相邻模式的光学微孔子,该模式被大约10 GHz隔开,该模式稳定了孤子形成而无需使用其他辅助激光或RF组件。我们通过绝热泵波长的调谐证明了跨越1.5骨的单线体的确定性产生,即接近200 Thz。超宽的孤子存在范围高达17 GHz,不仅表明了系统的鲁棒性,而且还将扩展孤子梳的应用。此外,提出的方案被发现很容易引起多岩体以及具有增强的重复率(2和3 THz)和转化效率大于10%的孤子晶体。我们还显示了模式分离的有效热调节,以稳定地进入单soliton。我们的结果对于具有简化配置的芯片尺度自我引用频率梳子至关重要。
The Kerr soliton frequency comb is a revolutionary compact ruler of coherent light that allows applications, from precision metrology to quantum information technology. The universal, reliable, and low-cost soliton microcomb source is key to these applications. In this work, we thoroughly present an innovative design strategy for realizing optical microresonators with two adjacent modes, separated by approximately 10 GHz, which stabilizes soliton formation without using additional auxiliary laser or RF components. We demonstrate the deterministic generation of the single-solitons that span 1.5-octaves, i.e., near 200 THz, via adiabatic pump wavelength tuning. The ultra-wide soliton existence ranges up to 17 GHz not only suggests the robustness of the system but will also extend the applications of soliton combs. Moreover, the proposed scheme is found to easily give rise to multi-solitons as well as the soliton crystals featuring enhanced repetition rate (2 and 3 THz) and conversion efficiency greater than 10%. We also show the effective thermal tuning of mode separation for stably accessing single-soliton. Our results are crucial for the chip-scale self-referenced frequency combs with a simplified configuration.