论文标题

被困的反向孤子的强制振荡运动

Forced Oscillatory Motion of Trapped Counter-Propagating Solitons

论文作者

Bao, Chengying, Shen, Boqiang, Suh, Myoung-Gyun, Wang, Heming, Safak, Kemal, Dai, Anan, Matsko, Andrey B., Kartner, Franz X., Vahala, Kerry J.

论文摘要

两个孤子的组速度和相速度都可以通过Kerr效应介导的相互作用同步,从而导致所谓的孤子捕获。当孤子穿过单通气光纤或在光学谐振器中循环时,可能会发生捕获。在这里,我们证明并理论上解释了孤子捕获的新表现,这在微孔子中的反传播孤子之间发生。当使用略有失调的泵频率对微孔子进行撞泵时,并且在存在反向散射的情况下,顺时针和逆时针孔的组速度会经过周期性调制,而不是锁定为恒定速度。从微腔发射后,孤子具有一个相对振荡运动,其振幅可能大于孤子脉冲宽度。这种相对运动将侧带精细结构引入了反传播孤子的光谱中。我们的结果突出了相干泵送在确定微孔子中的孤子动力学方面的重要性,并为孤子诱捕物理学增添了新的维度。

Both the group velocity and phase velocity of two solitons can be synchronized by a Kerr-effect mediated interaction, causing what is known as soliton trapping. Trapping can occur when solitons travel through single-pass optical fibers or when circulating in optical resonators. Here, we demonstrate and theoretically explain a new manifestation of soliton trapping that occurs between counter-propagating solitons in microresonators. When counter-pumping a microresonator using slightly detuned pump frequencies and in the presence of backscattering, the group velocities of clockwise and counter-clockwise solitons undergo periodic modulation instead of being locked to a constant velocity. Upon emission from the microcavity, the solitons feature a relative oscillatory motion having an amplitude that can be larger than the soliton pulse width. This relative motion introduces a sideband fine structure into the optical spectrum of the counter-propagating solitons. Our results highlight the significance of coherent pumping in determining soliton dynamics within microresonators and add a new dimension to the physics of soliton trapping.

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