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宽孔径锁模半导体激光器延时模型中的光子弹

Light bullets in a time-delay model of a wide-aperture mode-locked semiconductor laser.

作者信息

Pimenov A, Javaloyes J, Gurevich S V, Vladimirov A G

机构信息

Weierstrass Institute, Mohrenstrasse 39, 10117 Berlin, Germany.

Departament de Física, Universitat de les Illes Balears, C/ Valldemossa km 7.5, 07122 Mallorca, Spain.

出版信息

Philos Trans A Math Phys Eng Sci. 2018 Jul 28;376(2124). doi: 10.1098/rsta.2017.0372.

Abstract

Recently, a mechanism of formation of light bullets (LBs) in wide-aperture passively mode-locked lasers was proposed. The conditions for existence and stability of these bullets, found in the long cavity limit, were studied theoretically under the mean field (MF) approximation using a Haus-type model equation. In this paper, we relax the MF approximation and study LB formation in a model of a wide-aperture three section laser with a long diffractive section and short absorber and gain sections. To this end, we derive a non-local delay-differential equation (NDDE) model and demonstrate by means of numerical simulations that this model supports stable LBs. We observe that the predictions about the regions of existence and stability of the LBs made previously using MF laser models agree well with the results obtained using the NDDE model. Moreover, we demonstrate that the general conclusions based upon the Haus model that regard the robustness of the LBs remain true in the NDDE model valid beyond the MF approximation, when the gain, losses and diffraction per cavity round trip are not small perturbations anymore.This article is part of the theme issue 'Dissipative structures in matter out of equilibrium: from chemistry, photonics and biology (part 1)'.

摘要

最近,有人提出了一种在宽孔径被动锁模激光器中形成光子弹(LB)的机制。利用豪斯型模型方程,在平均场(MF)近似下,从理论上研究了在长腔极限下这些子弹的存在条件和稳定性。在本文中,我们放宽了MF近似,并研究了具有长衍射段以及短吸收器和增益段的宽孔径三段式激光器模型中的LB形成。为此,我们推导了一个非局部延迟微分方程(NDDE)模型,并通过数值模拟证明该模型支持稳定的LB。我们观察到,先前使用MF激光模型对LB存在区域和稳定性的预测与使用NDDE模型获得的结果非常吻合。此外,我们证明,当每腔往返的增益、损耗和衍射不再是小扰动时,基于豪斯模型得出的关于LB鲁棒性的一般结论在超出MF近似有效的NDDE模型中仍然成立。本文是主题为“非平衡态物质中的耗散结构:来自化学、光子学和生物学(第1部分)”这一特刊的一部分。

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