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首页> 外文期刊>IEEE Photonics Technology Letters >Suppression of TE Polarization by a Multiquantum-Barrier Structure in Sub-630-nm Tensile-Strained GaInP-AlGaInP QW Lasers
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Suppression of TE Polarization by a Multiquantum-Barrier Structure in Sub-630-nm Tensile-Strained GaInP-AlGaInP QW Lasers

机译:630 nm以下拉伸应变GaInP-AlGaInP QW激光器中多量子势垒结构对TE偏振的抑制

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摘要

Many applications require laser emission with stable single polarization. While stable transverse-electric (TE) emission is favored by several mechanisms and, consequently, is relatively easy to obtain, achieving stable transverse-magnetic (TM) emission is more difficult. This letter proposes a method for suppressing the TE polarization by using a multiquantum-barrier. In our experiments, the multiquantum-barrier structure was inserted into the p-type cladding of tensile-strained GaInP-AlGaInP quantum-well lasers emitting at wavelengths shorter than 630 nm. As a result, the TE emission was suppressed over a wide range of injection levels, operating temperatures, and device lengths, proving that the method is effective for achieving stable TM emission.
机译:许多应用要求激光发射具有稳定的单偏振。尽管稳定的横向电(TE)发射受到多种机制的支持,因此相对容易获得,但实现稳定的横向磁(TM)发射却更加困难。这封信提出了一种通过使用多量子势垒来抑制TE极化的方法。在我们的实验中,将多量子势垒结构插入了波长小于630 nm的拉伸应变GaInP-AlGaInP量子阱激光器的p型覆层中。结果,在很宽的注入水平,工作温度和装置长度范围内抑制了TE发射,证明了该方法对于实现稳定的TM发射是有效的。

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