Modeling of above-threshold operation of 2-D antiguided VCSEL arrays

N. N. Elkin, A. P. Napartovich, D. V. Vysotsky, V. N. Troshchieva
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引用次数: 1

Abstract

Single-mode operation of a 2-D (square lattice geometry) antiguided vertical cavity surface emitting laser (VCSEL) array was studied numerically. The VCSEL array is composed of transversely uniform layers including the Bragg mirrors, thin spacer and loss layers located between elements and active layer consisted of 3 quantum wells. Besides, the output facet is patterned by windows in the metal electrode. The lasing mode was found as a result of an iterative procedure consisting of light round-trips in the device and active layer recalculations based on solution of 2D nonlinear diffusion equation for charge carriers. 3D bi-directional beam propagation method was developed for round-trip calculation. For linear stability analysis a number of higher-order optical modes were found in the VCSEL array with gain and index distributions established by the oscillating mode. The in-phase mode with constant phase over the array, out-of-phase mode with alternating phase between elements and modes with mixed symmetry were considered. Calculations were made for various lengths of spacings between elements and sizes of the array. 4x4 and 5x5 laser arrays were studied numerically. Favourable conditions were found for lasing the in-phase mode providing high laser beam quality.
二维反制导VCSEL阵列阈值以上操作建模
对二维(方晶格几何)反制导垂直腔面发射激光器(VCSEL)阵列的单模工作进行了数值研究。VCSEL阵列由横向均匀层组成,包括Bragg反射镜、薄间隔层和位于元件之间的损耗层,以及由3个量子阱组成的有源层。此外,输出面由金属电极中的窗口形成图案。该激光模式是由光在器件中的往返和基于载流子二维非线性扩散方程的有源层重新计算组成的迭代过程得到的。提出了三维双向波束传播法进行往返计算。在线性稳定性分析中,发现VCSEL阵列存在高阶光学模式,其增益和折射率分布由振荡模式决定。考虑了阵列上相位恒定的同相模态、单元间相位交替的出相模态和混合对称模态。计算了元素之间不同长度的间距和数组的大小。对4x4和5x5激光阵列进行了数值研究。发现了激光同相模式的有利条件,提供了高的激光束质量。
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