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High temperature operation of edge-emitting photonic-crystal distributed-feedback quantum cascade lasers at λ~7.6 μm

机译:λ〜7.6μm的边缘发射光子晶体分布反馈量子级联激光器的高温工作

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摘要

We present large-area, edge-emitting, photonic-crystal (PC) distributed-feedback (DFB) quantum cascade lasers (QCLs) emitting at λ~7.6 μm and operating up to a heat sink temperature of 80 °C. The lasers use the anticrossing of index- and Bragg-guided dispersions of rectangular lattice to control the optical mode in the wafer plane. Single-mode operation with a high signal-to-noise ratio of about 20 dB and narrow beam divergence of 6.2° was obtained. A high peak power of 630 mW at 20 °C and still more than 160 mW at 60 °C was observed. Such a high performance single-mode device is very important to expand the potential applications in the long-wave infrared range.
机译:我们提出了一种大面积,边缘发射,光子晶体(PC)分布反馈(DFB)量子级联激光器(QCL),其发射波长为λ〜7.6μm,并且可以在高达80°C的散热器温度下工作。激光使用矩形晶格的折射率和布拉格引导的色散的反交叉来控制晶片平面中的光学模式。获得具有约20 dB的高信噪比和6.2°的窄光束发散度的单模操作。观察到在20°C时的峰值功率为630 mW,在60°C时仍超过160 mW。这种高性能的单模设备对于扩展长波红外范围内的潜在应用非常重要。

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