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High-power thulium lasers on a silicon photonics platform

机译:硅光子平台上的高功率th激光器

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摘要

Mid-infrared laser sources are of great interest for various applications, including light detection and ranging, spectroscopy, communication, trace-gas detection, and medical sensing. Silicon photonics is a promising platform that enables these applications to be integrated on a single chip with low cost and compact size. Silicon-based high-power lasers have been demonstrated at 1.55 μm wavelength, while in the 2 μm region, to the best of our knowledge, high-power, high-efficiency, and monolithic light sources have been minimally investigated. In this Letter, we report on high-power CMOS-compatible thulium-doped distributed feedback and distributed Bragg reflector lasers with single-mode output powers up to 267 and 387 mW, and slope efficiencies of 14% and 23%, respectively. More than 70 dB side-mode suppression ratio is achieved for both lasers. This work extends the applicability of silicon photonic microsystems in the 2 μm region.
机译:中红外激光源对于包括光检测和测距,光谱学,通信,痕量气体检测和医学传感在内的各种应用非常感兴趣。硅光子学是一个有前途的平台,该平台使这些应用程序能够以低成本和紧凑尺寸集成在单个芯片上。硅基高功率激光器的波长为1.55μm,而在2μm范围内,据我们所知,对高功率,高效率和整体式光源的研究很少。在这封信中,我们报告了单模输出功率分别高达267和387 mW,斜率效率分别为14%和23%的大功率CMOS兼容th掺杂的分布式反馈和分布式布拉格反射器激光器。两种激光器的侧模抑制比均超过70 dB。这项工作扩展了2μm区域中硅光子微系统的适用性。

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