Stochastic Simulation of Emission Spectra and Classical Photon Statistics of Quantum Dot Superluminescent Diodes

Kai Niklas Hansmann, R. Walser
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引用次数: 2

Abstract

We present a stochastic procedure to investigate the correlation spectra of quantum dot superluminescent diodes. The classical electric field of a diode is formed by a polychromatic superposition of many independent stochastic oscillators. Assuming fields with individual carrier frequencies, Lorentzian linewidths and amplitudes we can form any relevant experimental spectrum using a least square fit. This is illustrated for Gaussian and Lorentzian spectra, Voigt profiles and box shapes. Eventually, the procedure is applied to an experimental spectrum of a quantum dot superluminescent diode which determines the first- and second-order temporal correlation functions of the emission. We find good agreement with the experimental data and a quantized treatment. Thus, a stochastic field represents broadband light emitted by quantum dot superluminescent diodes.
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量子点超发光二极管发射光谱的随机模拟和经典光子统计
我们提出了一个随机过程来研究量子点超发光二极管的相关光谱。二极管的经典电场是由许多独立的随机振荡器的多色叠加形成的。假设场具有单个载波频率,洛伦兹线宽和振幅,我们可以使用最小二乘拟合形成任何相关的实验频谱。对于高斯谱和洛伦兹谱、Voigt谱和盒形图都说明了这一点。最后,将该方法应用于量子点超发光二极管的实验光谱,确定了发射的一阶和二阶时间相关函数。结果与实验数据吻合良好,并进行了量化处理。因此,随机场表示量子点超发光二极管发射的宽带光。
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