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Evanescent wave modulator for medium infrared wavelengths(8 —12 μm)

机译:用于中红外波长的蒸发波调制器(8-12μm)

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We present a new modulation concept for medium infrared (8 – 12 um) wavelengths. The operation principle of the presented modulator is based on evanescent wave absorption by means of a bulk, single or multiple quantum well structure. A sub-wavelength grating ensures efficient coupling of the optical field to the absorption medium. Modulation is then achieved by depletion of this absorption medium. We present an analysis of concept parameters and point out their respective advantages and disadvantages with respect to the modulation performance. In this context, we investigated the impact of different absorption media as bulk, single and multiple quantum well structures and found that single quantum well structures are best suited for modulation purposes. Simulations pointed out that an absolute modulation depth of the order of 60% can be achieved. We also investigated the impact of the diffraction order on the modulation performance. Furthermore, some preliminary experimental results on this modulation concept are presented and compared with simulations.
机译:我们为中红外(8 - 12 um)波长提供了一种新的调制概念。所提出的调制器的操作原理基于散装,单个或多个量子阱结构的渐逝波吸收。子波长光栅确保光学场的有效耦合到吸收介质。然后通过耗尽该吸收介质来实现调节。我们对概念参数进行了分析,并指出了对调制性能的各自优点和缺点。在这方面,我们研究了不同的吸收介质的散装,单一和多重量子阱结构的影响,并发现,单量子阱结构最适合于调制的目的。模拟指出,可以实现60%的绝对调制深度。我们还调查了衍射顺序对调制性能的影响。此外,对该调制概念进行了一些初步实验结果,并与模拟进行了比较。

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