Active Control of Femtosecond Soliton Molecules

F. Kurtz, C. Ropers, G. Herink
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Abstract

Mode-locked lasers are a paramount example of dissipative nonlinear systems that support bound-states of multiple solitons, often referred as "soliton molecules" [1,2,3]. Previously hidden, internal dynamics can now be accessed by employing the time-stretch dispersive Fourier transform (TS-DFT) and spectral interferometry — enabling the tracking of pulse separations and relative phases in real-time [4,5]. Oscillatory internal motions, akin to molecular vibrations, have previously been tracked — prompting the question whether such internal oscillations can be externally excited and ultimately be controlled.
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飞秒孤子分子的主动控制
锁模激光器是耗散非线性系统的一个重要例子,它支持多孤子的束缚态,通常被称为“孤子分子”[1,2,3]。以前隐藏的内部动态现在可以通过使用时间拉伸色散傅立叶变换(TS-DFT)和光谱干涉术来访问-能够实时跟踪脉冲分离和相对相位[4,5]。振荡的内部运动,类似于分子振动,之前已经被跟踪了,这引发了一个问题,即这种内部振荡是否可以被外部激发并最终被控制。
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