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微谐振器中的暗-亮孤子束缚态

Dark-Bright Soliton Bound States in a Microresonator.

作者信息

Zhang Shuangyou, Bi Toby, Ghalanos George N, Moroney Niall P, Del Bino Leonardo, Del'Haye Pascal

机构信息

Max Planck Institute for the Science of Light, 91058 Erlangen, Germany.

Department of Physics, Friedrich Alexander University Erlangen-Nuremberg, 91058 Erlangen, Germany.

出版信息

Phys Rev Lett. 2022 Jan 21;128(3):033901. doi: 10.1103/PhysRevLett.128.033901.

Abstract

Dissipative Kerr solitons in microresonators have facilitated the development of fully coherent, chip-scale frequency combs. In addition, dark soliton pulses have been observed in microresonators in the normal dispersion regime. Here, we report bound states of mutually trapped dark-bright soliton pairs in a microresonator. The soliton pairs are generated seeding two modes with opposite dispersion but with similar group velocities. One laser operating in the anomalous dispersion regime generates a bright soliton microcomb, while the other laser in the normal dispersion regime creates a dark soliton via Kerr-induced cross-phase modulation with the bright soliton. Numerical simulations agree well with experimental results and reveal a novel mechanism to generate dark soliton pulses. The trapping of dark and bright solitons can lead to light states with the intriguing property of constant output power while spectrally resembling a frequency comb. These results can be of interest for telecommunication systems, frequency comb applications, and ultrafast optics.

摘要

微谐振器中的耗散克尔孤子推动了全相干芯片级频率梳的发展。此外,在正常色散 regime 的微谐振器中已观察到暗孤子脉冲。在此,我们报告了微谐振器中相互捕获的暗 - 亮孤子对的束缚态。孤子对是通过用具有相反色散但群速度相似的两种模式进行种子注入而产生的。一个工作在反常色散 regime 的激光器产生一个亮孤子微梳,而另一个工作在正常色散 regime 的激光器通过与亮孤子的克尔诱导交叉相位调制产生一个暗孤子。数值模拟与实验结果吻合良好,并揭示了一种产生暗孤子脉冲的新机制。暗孤子和亮孤子的捕获可导致具有恒定输出功率这一有趣特性且在光谱上类似于频率梳的光态。这些结果可能对电信系统、频率梳应用和超快光学具有重要意义。

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