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Nonlinear gain effects in quantum well, quantum well wire, and quantum well box lasers

机译:量子阱,量子阱线和量子阱盒激光器中的非线性增益效应

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摘要

The nonlinear gain effects due to the spectral hole burning in quantum well (QW), quantum well wire (QWW), and quantum well box (QWB) lasers are discussed. It is found that the gain nonlinearity is enhanced by the quantum confinement of carriers, and is further enhanced in the QWW and QWB lasers. These nonlinear gain effects significantly affect the modulation dynamics of the semiconductor lasers under high photon density conditions. It is emphasized that both the damping rate and the resonant relaxation frequency are degraded through reduction of the differential gain. The effects of nonlinear gain on the spectral dynamics are discussed. The result indicates that the gain nonlinearity causes enhancement of the linewidth enhancement factor with the increase of the photon density, which leads to the spectral rebroadening under high photon density conditions.
机译:讨论了由于量子阱(QW),量子阱线(QWW)和量子阱盒(QWB)激光器中的光谱孔燃烧引起的非线性增益效应。发现载流子的量子限制会增强增益非线性,并且在QWW和QWB激光器中会进一步增强增益非线性。这些非线性增益效应显着影响高光子密度条件下半导体激光器的调制动力学。要强调的是,衰减率和共振弛豫频率都通过减小差分增益而降低。讨论了非线性增益对频谱动力学的影响。结果表明,增益非线性会随着光子密度的增加而引起线宽增强因子的增强,从而导致高光子密度条件下的光谱重新展宽。

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