论文标题

载体唯一降雨驱动的极化吸引子

Polarization attractors driven by vector soliton rain

论文作者

Sergeyev, Sergey V., Eliwa, Mahmoud, Kbashi, Hani

论文摘要

Soliton Rain是一堆小的Soliton脉冲,慢慢漂移到附近的主脉冲,具有往返时期。对于通过碳纳米管锁定的ER掺杂纤维激光模式,我们首次在实验和理论上在实验和理论上都证明了一种新型的极化吸引子,可由载体soliton Rain控制。通过调节泵的功率,矢量soliton雨采取了具有极化旋转状态的脉冲形式,从而使Poincaré球上的缓慢发展的轨迹从双螺旋螺旋变为圆圈。控制复杂的多层动力学的获得的结果可以在激光物理和工程中具有潜在应用,并在光谱,计量学和生物医学诊断方面具有应用。

Soliton rain is a bunch of small soliton pulses slowly drifting nearby the main pulse having the period of a round trip. For Er-doped fiber laser mode-locked by carbon nanotubes, for the first time, we demonstrate both experimentally and theoretically a new type of polarization attractors controllable by the vector soliton rain. With adjusting the pump power, vector soliton rain takes the form of pulses with rotating states of polarization which enable transforming slowly evolving trajectories on the Poincaré sphere from the double-scroll spiral to the circle. The obtained results on controlling complex multisoliton dynamics can be of interest in laser physics and engineering with potential applications in spectroscopy, metrology, and biomedical diagnostics.

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