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Locking and Noise Properties of Multisection Semiconductor Lasers With Optical Injection. Application to Fabry–PÉrot and DFB Cavities

机译:带光学注入的多节半导体激光器的锁定和噪声特性。应用于法布里-珀罗和DFB型腔

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摘要

An analytical theory is presented for the study of injection locking in multisection semiconductor lasers. The Helmoltz equation for the electric field is solved using the Green''''s function method and the injected fields are included via the boundary conditions. Two cases are distinguished, injection through the front facet of the laser and injection through the rear facet. In both cases, an equation of evolution for the envelope of the electric field is established, taking into account the longitudinal distribution of the carrier and photon densities and the nonlinear gain. The expressions of the intensity, phase and carrier density noise spectra are derived using a matrix formulation. Comparison to classical equations used for Fabry–PÉrot lasers is discussed. The locking properties of a distributed feedback laser with an antireflection coated front facet are studied in detail. Results demonstrate the strong sensitivity of the locking properties on the phase grating and rear facet reflectivity.
机译:提出了一种用于研究多节半导体激光器中注入锁定的分析理论。使用格林函数方法求解电场的Helmoltz方程,并通过边界条件包括注入的场。有两种情况,一种是通过激光器的前端面注入,另一种是通过后端面注入。在这两种情况下,考虑到载流子的纵向分布和光子密度以及非线性增益,建立了电场包络线的演化方程。使用矩阵公式可以得出强度,相位和载流子密度噪声谱的表达式。讨论了与用于Fabry-Pérot激光器的经典方程的比较。详细研究了具有防反射涂层的正面的分布式反馈激光器的锁定特性。结果证明了对相位光栅的锁定特性和背面反射率具有很强的敏感性。

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