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Journal ArticleDOI

Role of transverse effects in laser instabilities.

TLDR
The main claim is that transverse effects can be responsible for low threshold instabilities and is more plausible to explain the observed pulsations in many lasers than what is available in terms of the traditional plane-wave theories.
Abstract
We generalize the traditional Maxwell-Bloch theory of a ring laser and analyze the dynamical role of transverse effects. With the help of a suitable extension of the uniform-field limit we perform an essentially analytical study of the steady-state and linear-stability properties of a ring resonator containing a homogeneously broadened active medium. In this context we incorporate the effects of curved reflecting surfaces, the possible lack of transverse uniformity of the pump, and the detailed structure of the cavity modes. In the uniform-field limit we prove that the laser steady state is of the single-mode variety and that lack of stability can be induced in this field configuration even only a few percent above the threshold for laser action. Thus our main claim is that transverse effects can be responsible for low threshold instabilities. This explanation is more plausible to explain the observed pulsations in many lasers than what is available in terms of the traditional plane-wave theories.

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Citations
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Journal ArticleDOI

Pattern formation and competition in nonlinear optics

TL;DR: In this paper, a review of different experimental situations is presented, including a discussion on suitable indicators which characterize the different regimes, and a view on perspective new phenomena and applications include an extension to atom optics.
Journal ArticleDOI

Overview of transverse effects in nonlinear-optical systems

TL;DR: In this paper, the authors provide an overview of transverse effects in nonlinear-optical systems, including self-focusing, filamentation, modulational instabilities, spontaneous pattern formation and symmetry breaking, nonlinear waveguiding and transverse mode excitation.
Book ChapterDOI

Optical Pattern Formation

TL;DR: The field of optical pattern formation (OPF) studies the spatial and spatio-temporal phenomena that arise in the structure of electromagnetic field in the planes orthogonal with respect to the direction of propagation as mentioned in this paper.
Book

Nonlinear Optical Systems

TL;DR: This book provides an in-depth exploration of the dynamics of lasers and other relevant optical systems, under the umbrella of a unitary spatio-temporal vision, treating them from the viewpoint of nonlinear dynamical systems.
Journal ArticleDOI

Instabilities and spatial complexity in a laser

TL;DR: In this article, the emergence of spatial structures in a ring laser model with transverse effects is discussed, and the authors develop a description that can capture the essential features of transverse dynamics without the need for large-scale numerical efforts.
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