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Optical modulation of quantum cascade laser with optimized excitation wavelength

机译:优化激发波长的量子级联激光器的光调制

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The excitation wavelength for all-optical modulation of a 10.6 μm mid-infrared (MIR) quantum cascade laser (QCL) was varied in order to obtain maximum modulation depth. Both amplitude and wavelength modulation experiments were conducted at 820 nm and 1550 nm excitation respectively, whereby the latter matches the interband transition in the QCL active region. Experimental results show that for continuous-wave mode-operated QCL, the efficiency of free carrier generation is doubled under 1550 nm excitation compared with 820 nm excitation, resulting in an increase of the amplitude modulation index from 19% to 36%. At the same time, the maximum wavelength shift is more than doubled from 1.05 nm to 2.80 nm. Furthermore, for the first time to our knowledge, we demonstrated the optical switching of a QCL operated in pulse mode by simple variation of the excitation wavelength.
机译:改变用于10.6μm中红外(MIR)量子级联激光器(QCL)的全光调制的激发波长,以获得最大调制深度。分别在820 nm和1550 nm激发下进行幅度和波长调制实验,从而使后者与QCL有源区中的带间跃迁相匹配。实验结果表明,对于连续波模式操作的QCL,在1550 nm激发下,自由载流子的产生效率是820 nm激发的两倍,导致调幅指数从19%增加到36%。同时,最大波长偏移从1.05 nm增加到2.80 nm超过一倍。此外,据我们所知,这是我们第一次通过简单改变激发波长来演示以脉冲模式操作的QCL的光学开关。

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