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Analysis of microcavity VCSEL lasing modes using a full-vector weighted index method

机译:使用全矢量加权指数方法分析微腔VCSEL激光模式

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Presents a semi-analytic full-vector method for calculating the spatial profile, optical confinement factor resonant frequency, absorption loss, and mirror loss of lasing modes in cylindrically symmetric microcavity vertical-cavity surface-emitting lasers (VCSEL's). It can be shown that this method gives the best separable approximation for the electric and magnetic vector potentials. Our technique can model the entire VCSEL structure and can treat complex media. We apply the method to etched-post and oxide-apertured VCSEL's designed for 980-nm emission and find a blueshift in cavity resonance as the cavity radius shrinks. We also find a minimum optical cavity radius below which radially bound lasing modes cannot be supported. This radius depends on the device geometry and lies between 0.5 and 1 /spl mu/m for the devices studied. Once this model is augmented to include diffraction losses-the dominant loss mechanism for conventional small aperture lasers-it will provide a complete picture of lasing eigenmodes in microcavity VCSEL's.
机译:提出了一种半解析全矢量方法,用于计算圆柱对称微腔垂直腔面发射激光器(VCSEL)中激光模式的空间轮廓,光学限制因子共振频率,吸收损耗和反射镜损耗。可以证明,该方法给出了矢量和电磁矢量势的最佳可分离近似。我们的技术可以对整个VCSEL结构建模,并且可以处理复杂的媒体。我们将该方法应用于为980 nm发射而设计的蚀刻后和氧化物穿孔的VCSEL,并且随着腔半径的缩小,发现腔共振出现蓝移。我们还找到了最小光学腔半径,低于该半径将无法支持径向绑定的激光模式。该半径取决于设备的几何形状,对于所研究的设备,其半径介于0.5和1 / spl mu / m之间。一旦将该模型扩展到包括衍射损耗(传统的小孔径激光器的主要损耗机制),它将提供微腔VCSEL中激光本征模的完整图像。

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