Tikan Alexey, Tusnin Aleksandr, Riemensberger Johann, Churaev Mikhail, Ji Xinru, Komagata Kenichi Nicolas, Wang Rui Ning, Liu Junqiu, Kippenberg Tobias J
Institute of Physics, Swiss Federal Institute of Technology Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
Sci Adv. 2022 Apr;8(13):eabm6982. doi: 10.1126/sciadv.abm6982. Epub 2022 Apr 1.
A photonic dimer composed of two evanescently coupled high- microresonators is a fundamental element of multimode soliton lattices. It has demonstrated a variety of emergent nonlinear phenomena, including supermode soliton generation and soliton hopping. Here, we present another aspect of dissipative soliton generation in coupled resonators, revealing the advantages of this system over conventional single-resonator platforms. Namely, we show that the accessibility of solitons markedly varies for symmetric and antisymmetric supermode families. Linear measurements reveal that the coupling between transverse modes, giving rise to avoided mode crossings, can be substantially suppressed. We explain the origin of this phenomenon and show its influence on the dissipative Kerr soliton generation in lattices of coupled resonators of any type. Choosing an example of the topological Su-Schrieffer-Heeger model, we demonstrate how the edge state can be protected from the interaction with higher-order modes, allowing for the formation of topological Kerr solitons.
由两个通过倏逝波耦合的高微谐振器组成的光子二聚体是多模孤子晶格的基本元件。它已展现出各种涌现的非线性现象,包括超模孤子产生和孤子跳跃。在此,我们展示了耦合谐振器中耗散孤子产生的另一个方面,揭示了该系统相对于传统单谐振器平台的优势。具体而言,我们表明对于对称和反对称超模族,孤子的可及性显著不同。线性测量表明,导致模式交叉避免的横向模式之间的耦合可被大幅抑制。我们解释了这种现象的起源,并展示了其对任何类型耦合谐振器晶格中耗散克尔孤子产生的影响。以拓扑苏 - 施里弗 - 海格模型为例,我们展示了边缘态如何能够免受与高阶模式相互作用的影响,从而允许形成拓扑克尔孤子。