arXiv · 2008.09058
How carrier memory enters the Haus master equation of mode-locking
Abstract
We present a generalization of the Haus master equation in which a dynamical boundary condition allows to describe complex pulse trains such as the Q-switched and harmonic transitions of passive mode-locking as well as the weak interactions between localized states. As an example, we investigate the influence of group velocity dispersion on the stability boundaries of the Q-switched regime. We compare our results with that of a time-delayed system.
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Jan Hausen, Kathy Lüdge, Svetlana V. Gurevich, Julien Javaloyes. 2020-08-20. How carrier memory enters the Haus master equation of mode-locking. https://doi.org/10.1364/ol.406136
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