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Dynamic behavior of fundamental-mode stabilized VCSELs using a shallow surface relief

机译:使用浅表面起伏的基本模式稳定VCSEL的动态行为

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An extensive theoretical study was performed on the dynamic behavior of 850-nm-wavelength oxide-confined fundamental-mode stabilized vertical-cavity surface-emitting lasers (VCSELs), using a shallow surface relief. The surface relief is used to provide lower mirror loss for the fundamental mode, thus acting as a mode discriminator. In this way, single-mode operation at high power levels can be obtained. We utilized a comprehensive model that includes the detailed epitaxial layer structure and device geometry when calculating the optical fields and that accurately accounts for the dynamic effects of carrier density and temperature on the modal distributions. Modulation response, eye diagrams, bit error rate (BER), and relative intensity noise (RIN) were simulated and compared to the performance of VCSELs without a mode discriminator, i.e., conventional multimode VCSELs. The fundamental-mode stabilized VCSELs are associated with a higher out-coupling, which lowers the relaxation oscillation frequency and damping, and strong spatial hole burning, which induces a low-frequency roll-off in the modulation response and contributes to the damping of the relaxation oscillation at low bias. However, their dynamics is fully competitive with conventional multimode VCSELs at both 2.5 and 10 Gb/s although they exhibit a slightly higher eye closure. We only found a 0.5-dB power penalty in the BER. The RIN is enhanced, with a peak that is about 10-15 dB higher, caused by the lower damping of the relaxation oscillation. It should be noted that in the comparison we assume that all modes are equally captured from the multimode VCSEL. A mode-selective loss can severely degrade its performance.
机译:对使用浅表面起伏的850 nm波长氧化物限制的基模稳定垂直腔面发射激光器(VCSEL)的动态行为进行了广泛的理论研究。表面起伏用于为基本模式提供较低的反射镜损耗,因此用作模式鉴别器。这样,可以获得高功率水平的单模运行。在计算光场时,我们利用了一个综合模型,其中包括详细的外延层结构和器件几何形状,并且可以准确地说明载流子密度和温度对模态分布的动态影响。模拟调制响应,眼图,误码率(BER)和相对强度噪声(RIN),并将其与不带模式鉴别器的VCSEL(即常规多模VCSEL)的性能进行比较。基本模式稳定的VCSEL与较高的输出耦合相关联,从而降低了弛豫振荡频率和阻尼,以及强烈的空间空穴燃烧,从而引起调制响应中的低频滚降,并有助于降低噪声。低偏置下的弛豫振荡。但是,它们的动态性能与传统的多模VCSEL在2.5 Gb / s和10 Gb / s时完全竞争,尽管它们具有较高的眼图闭合度。我们在BER中仅发现0.5 dB的功率损失。由于弛豫振荡的较低阻尼,RIN增强了,其峰值大约高出10-15 dB。应该注意的是,在比较中,我们假设所有模式均从多模式VCSEL中捕获。模式选择损耗会严重降低其性能。

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