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Joint time-frequency measurements of modelocked semiconductor diode lasers and dynamics using frequency-resolved optical gating

机译:使用频率分辨光学选通器联合对接ockock半导体二极管激光器进行时频测量和动力学

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摘要

Joint time-frequency ultrafast measurements using frequency-resolved optical gating (FROG) have been used to provide a fundamental understanding of: (1) ultrashort pulse propagation in semiconductor optical amplifiers; (2) the modelocking dynamics in external cavity semiconductor diode lasers; and (3) correlated multiple-wavelength generation from mode locked semiconductor lasers. The pulse shaping and chirping effects measured by FROG are shown to be attributed to intracavity gain and saturable absorbing dynamics, as well as group velocity dispersion. In addition, the intracavity gain dynamics show a regime of transient unsaturated gain, which can be exploited to allow phase-correlated multiple-wavelength modelocked operation from a single-stripe external-cavity semiconductor diode laser. In this case, FROG techniques are used to understand the underlying mechanisms involved in the phase correlation process.
机译:使用频率分辨光学选通(FROG)进行联合时频超快测量可提供以下基本知识:(1)半导体光放大器中的超短脉冲传播; (2)外腔半导体二极管激光器的模托动力学; (3)关联了锁模半导体激光器产生的多波长。通过FROG测量的脉冲整形和线性调频效应被证明归因于腔内增益和饱和吸收动力学以及群速度色散。此外,腔内增益动力学显示了瞬态不饱和增益的状态,可以利用它来允许单条带状外腔半导体二极管激光器进行与相位相关的多波长多模耦合操作。在这种情况下,FROG技术用于了解相位相关过程中涉及的潜在机制。

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