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具有正交光注入的单向耦合垂直腔面发射激光器中的偏振同步

Polarization synchronization in unidirectionally coupled vertical-cavity surface-emitting lasers with orthogonal optical injection.

作者信息

Sciamanna M, Gatare I, Locquet A, Panajotov K

机构信息

Supélec, LMOPS CNRS UMR-7132, Unité de Recherche Commune Supélec et Université de Metz, Rue Edouard Belin 2, F-57070 Metz, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 May;75(5 Pt 2):056213. doi: 10.1103/PhysRevE.75.056213. Epub 2007 May 22.

Abstract

We analyze theoretically the polarization dynamics in unidirectionally coupled vertical-cavity surface-emitting lasers (VCSELs). The master VCSEL is subject to an isotropic optical feedback. The slave VCSEL is subject to an orthogonal optical injection from the master VCSEL, i.e., only the linearly polarized mode orthogonal to the dominant linearly polarized mode of the free-running slave VCSEL is injected into the slave VCSEL. This laser configuration may lead the slave VCSEL polarization to switch to that of the injected master laser field. The injected power required for polarization switching depends on the frequency detuning. We identify in the plane of the injection parameters two regions of enhanced synchronization between the injected LP mode and the corresponding slave LP mode. In the so-called region II the slave VCSEL exhibits anticorrelated dynamics in its two LP modes while in the so-called region I the slave VCSEL exhibits dynamics in only one LP mode, which corresponds to the polarization of the injected field. The two regions exhibit different synchronization properties in both the LP mode dynamics and total intensity dynamics. We furthermore analyze the dependency of the synchronization quality on the parameter mismatch between master and slave VCSELs and on the polarization switching properties of each VCSEL.

摘要

我们从理论上分析了单向耦合垂直腔面发射激光器(VCSEL)中的偏振动力学。主VCSEL受到各向同性光反馈的影响。从VCSEL受到来自主VCSEL的正交光注入,即仅将与自由运行从VCSEL的主导线性偏振模式正交的线性偏振模式注入到从VCSEL中。这种激光器配置可能会使从VCSEL的偏振切换到注入的主激光场的偏振。偏振切换所需的注入功率取决于频率失谐。我们在注入参数平面中确定了注入的线性偏振(LP)模式与相应从LP模式之间增强同步的两个区域。在所谓的区域II中,从VCSEL在其两个LP模式中表现出反相关动力学,而在所谓的区域I中,从VCSEL仅在一个LP模式中表现出动力学,这与注入场的偏振相对应。这两个区域在LP模式动力学和总强度动力学方面都表现出不同的同步特性。我们还分析了同步质量对主从VCSEL之间参数失配以及每个VCSEL偏振切换特性的依赖性。

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