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Modeling and Observations of Modal Structure in Antiguided VCSEL Arrays

机译:防诉VCSEL阵列模型结构的建模与观察

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Modal behavior of a 2-D (square lattice geometry) antiguided vertical cavity surface emitting laser (VCSEL) array was studied by 3-D bi-directional beam propagation method. Above threshold operation of leaky modes was simulated using multiple iterations. Besides, a method based on functions of Krylov's subspace, was developed to find a number of array optical modes in a VCSEL array with gain and index distributions established by the oscillating mode. In calculations, both Fourier and space variable descriptions of beam propagation were combined. The FFT technique was used for calculations of the Fourier image and the original. Conditions are found for favorable lasing of the in-phase mode providing high laser beam quality. Experimentally realized 5x5 laser array was studied numerically. The 2-D antiguided array results from shifting the cavity resonance between the element and inter-element regions and is fabricated by selective chemical etching and two-step metalorganic chemical vapor deposition (MOCVD) growth. In-phase and out-of-phase array mode operation is observed from top-emitting rectangular arrays as large as 400 elements, depending on the inter-element width, in good agreement with theory.
机译:通过3-D双向光束传播方法研究了2-D(方形格子几何)防欺负垂直腔表面发射激光器(VCSEL)阵列的模态行为。使用多次迭代模拟泄漏模式的高于阈值操作。此外,开发了一种基于Krylov子空间功能的方法,用于在VCSEL阵列中找到具有振荡模式建立的增益和索引分布的多个阵列光学模式。在计算中,组合了光束传播的傅立叶和空间可变描述。 FFT技术用于计算傅立叶图像和原件。找到了提供高激光束质量的相位模式的有利激光的条件。实验意识到数值研究了5x5激光阵列。通过选择性化学蚀刻和两步金属化学气相沉积(MOCVD)生长,2-D防追究阵列使元件和元件间区域之间的腔谐振移位,并通过选择性化学蚀刻和两步金属化学气相沉积(MOCVD)生长来制造。根据元素宽度,从顶部发射矩形阵列的顶部发射矩形阵列,与理论吻合一致,从顶部发射矩形阵列观察相位和超相位阵列模式操作。

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