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High-power VCSELs: single devices and densely packed 2-D-arrays

机译:大功率VCSEL:单个器件和密集封装的2D阵列

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摘要

We report on vertical-cavity surface-emitting lasers (VCSELs) and laser arrays providing high output powers in the 980-nm wavelength regime. Extensive investigations on size scaling behavior of single top- and bottom-emitting devices concerning fundamental electrooptical and thermal properties show limits of attainable output characteristics. Maximum experimentally achieved continuous-wave (CW) optical output powers at room temperature are 180 and 350 mW for top- and bottom-emitting VCSELs, respectively. Detailed analysis on the thermal interaction between closely spaced elements have been carried out to describe the thermally induced power limitations of two-dimensional arrays. Fabricated heat sunk bottom-emitting arrays of 23 elements and 40-/spl mu/m aperture size of individual elements show output powers of 0.56 W CW at room temperature and 0.8 W actively cooled, resulting in 0.33 kW/cm/sup 2/ and 0.47 kW/cm/sup 2/ maximum spatially averaged optical power density, respectively.
机译:我们报告了垂直腔表面发射激光器(VCSEL)和激光器阵列,它们在980 nm波长范围内提供高输出功率。对单个的顶部和底部发射器件的尺寸缩放行为的广泛研究涉及基本的电光学和热特性,显示了可获得的输出特性的局限性。对于顶部发射和底部发射的VCSEL,室温下通过实验获得的最大连续波(CW)光输出功率分别为180和350 mW。已经对紧密间隔的元件之间的热相互作用进行了详细分析,以描述二维阵列的热感应功率限制。预制的23个元件的热沉底部发射阵列,单个元件的孔径为40- / splμm/ m,在室温下输出功率为0.56 W CW,主动冷却时的输出功率为0.8 W,导致0.33 kW / cm / sup 2 /和0.47 kW / cm / sup 2 /最大空间平均光功率密度。

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