垂直腔面发射激光器的光学建模

G. R. Hadley
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引用次数: 6

摘要

垂直腔面发射激光器(VCSELs)由于其紧凑、高效、像散激光源的潜力,在许多重要的应用中成为当前研究的热点。不幸的是,它们的复杂性阻碍了仅仅基于经验方法的优化,而表明需要更好的数值模型。然而,由于光腔的高Q值和反射镜的分布反射率,对垂直腔激光器的光场进行建模是非常困难的。我们解决这一困境的方法是在两个复杂性尺度上开发建模技术。我们首先推导了一个有效指数模型,该模型在数值上是有效的,因此可以与载流子输运和热模型一起组成一个自一致的建模包。
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Optical modeling of vertical-cavity surface-emitting lasers
Vertical cavity surface-emitting lasers (VCSELs) are presently the subject of intense research due to their potential as compact, efficient, astigmatic laser sources for a number of important applications. Unfortunately, their complexity precludes optimization based solely upon empirical methods, and points instead to the need for better numerical models. Modeling the optical field in a vertical-cavity laser, however, is especially difficult due to both the high Q of the optical cavity and the distributed reflectivity of the mirrors. Our approach to this dilemma has been the development of modeling techniques on two complexity scales. We first derived an effective-index model that is numerically efficient and thus can be included together with carrier transport and thermal models to make up a self-consistent modeling package.
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High bandwidth polymer modulators Properties of small-aperture selectively oxidized VCSELs Lasing characteristics of GaAs/AlGaAs quantum wire laser and its array with an effective p-n junction current blocking layer Near-field analysis of beam properties of InGaAs ridge lasers Monolithic integration and individually-optimized operation of In/sub 0.2/Ga/sub 0.8/As vertical-cavity surface-emitting lasers and resonance-enhanced quantum well photodetectors
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