Highly reconfigurable hybrid laser based on an integrated nonlinear waveguide

光学 超短脉冲 物理 激光器 啁啾声 非线性系统 色散(光学) 带宽(计算) 脉冲整形 模式锁定 脉搏(音乐) 计算机科学 电信 探测器 量子力学
作者
A. Aadhi,Anton V. Kovalev,Michael Kues,Piotr Roztocki,Christian Reimer,Yanbing Zhang,Tao Wang,Brent E. Little,Sai T. Chu,Zhiming Wang,David Moss,Evgeny A. Viktorov,Roberto Morandotti
出处
期刊:Optics Express [The Optical Society]
卷期号:27 (18): 25251-25251 被引量:9
标识
DOI:10.1364/oe.27.025251
摘要

The ability of laser systems to emit different adjustable temporal pulse profiles and patterns is desirable for a broad range of applications. While passive mode-locking techniques have been widely employed for the realization of ultrafast laser pulses with mainly Gaussian or hyperbolic secant temporal profiles, the generation of versatile pulse shapes in a controllable way and from a single laser system remains a challenge. Here we show that a nonlinear amplifying loop mirror (NALM) laser with a bandwidth-limiting filter (in a nearly dispersion-free arrangement) and a short integrated nonlinear waveguide enables the realization and distinct control of multiple mode-locked pulsing regimes (e.g., Gaussian pulses, square waves, fast sinusoidal-like oscillations) with repetition rates that are variable from the fundamental (7.63 MHz) through its 205th harmonic (1.56 GHz). These dynamics are described by a newly developed and compact theoretical model, which well agrees with our experimental results. It attributes the control of emission regimes to the change of the NALM response function that is achieved by the adjustable interplay between the NALM amplification and the nonlinearity. In contrast to previous square wave emissions, we experimentally observed that an Ikeda instability was responsible for square wave generation. The presented approach enables laser systems that can be universally applied to various applications, e.g., spectroscopy, ultrafast signal processing and generation of non-classical light states.

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