Stimulated emission and optical gain in nitride-based compounds and quantum structures

E. Kuokštis, V. Liuolia, S. Miasojedovas, S. Juršėnas, A. Zukauskas, M. Leszczynski, P. Perlin, T. Suski
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Abstract

On the basis of investigation of photoluminescence (PL) dynamics of highly excited structures with different In content under strong excitation by short laser pulses and comparison with model calculations we analyze emission mechanisms in these In-containing systems. The obtained PL spectra in various In-containing samples exhibit stimulated emission line on the short-wavelength side of the spontaneous PL band. We suggest theoretical model for optical transitions in InGaN compounds with strong compositional fluctuations leading to two distinct types of the regions, one of which is In-rich islands. We assume that optical band-gap within those two regions is randomly fluctuating with Gaussian distribution. Calculated PL spectra as a function of excitation and time are in fair agreement with experimental results demonstrating all the observed peculiarities of luminescence dynamics obtained experimentally.
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氮基化合物和量子结构中的受激发射和光增益
在研究不同In含量高激发结构在短激光脉冲强激发下的光致发光动力学的基础上,与模型计算结果进行了比较,分析了这些含In体系的发光机理。得到的各种含in样品的PL光谱在自发PL波段的短波长一侧呈现受激发射线。我们提出了具有强成分波动的InGaN化合物的光学跃迁的理论模型,导致两种不同类型的区域,其中一种是富in岛。我们假设这两个区域的光学带隙是随机波动的高斯分布。计算得到的发光光谱随激发和时间的变化与实验结果基本一致,证明了实验所得的发光动力学特性。
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