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Comparison of the facet heating behavior between AlGaAs single quantum well lasers and double-heterojunction lasers

机译:藻类单量子井激光器和双异质结激光的小平面加热行为的比较

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The facet heating behavior of AlGaAs ridge-waveguided single quantum well (SQW) lasers and double-heterojunction (DH) lasers was measured using Raman microprobe spectroscopy. For the SQW lasers, samples with various ridge widths and cavity lengths were measured as a function of output power and injection current. The facet temperature was found to scale with the injection current density rather than the photon flux. In addition, no large discontinuities were found below and above the lasing threshold suggesting that the absorption of the emitted photons plays only a minor role in the initial stage of SQW facet heating. In contrast, a clear discontinuity in the facet temperature rise was found below and above the lasing threshold for the DH lasers indicating a substantial contribution to facet heating by the photon flux. The data suggest a large difference in the facet absorption of the lasing photons between the two types of lasers. This is further supported by the effect of argon laser probe beam induced facet heating on the diode laser's output power.
机译:使用拉曼微探剂光谱法测量Algaas Ridge-Wave-Wave-Wave-Wave-Lave-Wave-Waveume阱(SQW)激光器和双异质结(DH)激光器的小平面加热行为。对于SQW激光器,测量具有各种脊宽度和腔长度的样品作为输出功率和喷射电流的函数。发现刻面温度与喷射电流密度而不是光子通量缩放。此外,在下方并且在激光阈值之上没有发现大的不连续性,表明发射的光子的吸收仅在SQW小平面加热的初始阶段中起着小的作用。相反,在下面的小平面温度上升和高于DH激光器的角度阈值下方的明显不连续性,该DH激光器表示对由光子通量加热的基本贡献的显着贡献。数据建议在两种类型的激光器之间的刻面吸收方面的差异很大。通过氩激光探针光束诱导刻面对二极管激光器的输出功率的影响进一步支持这一点。

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