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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Gain and noise saturation of wide-band InAs-InP quantum dash optical amplifiers: model and experiments
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Gain and noise saturation of wide-band InAs-InP quantum dash optical amplifiers: model and experiments

机译:宽带InAs-InP量子破折号光放大器的增益和噪声饱和度:模型和实验

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We present a theoretical model for gain and noise saturation in quantum dash (QDash) semiconductor optical amplifiers. The model is based on the density matrix formalism and addresses static saturation spectra. The calculations are confirmed by a series of experiments which highlight the unique properties of these amplifiers. We demonstrate a high gain, a wide bandwidth, and high saturation power. The saturation spectrum is shown to be asymmetric, emphasizing saturation at short wavelength. The asymmetry stems from the high energy tail of the density of state function in those quantum wire (QWire) like gain media as well as from the interactions with the wetting layer.
机译:我们为量子破折号(QDash)半导体光放大器提供了增益和噪声饱和的理论模型。该模型基于密度矩阵形式,并处理静态饱和光谱。一系列实验证实了这些计算结果,这些实验突出了这些放大器的独特性能。我们展示了高增益,宽带宽和高饱和功率。饱和光谱显示为不对称的,强调了短波长下的饱和。不对称性源于那些量子线(QWire)(如增益介质)中状态函数密度的高能尾,以及与润湿层的相互作用。

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