论文标题

Picsecond Thz脉冲的有效的3维光子质量传导开关

Efficient 3-dimensional photonic-plasmonic photo-conductive switches for picosecond THz pulses

论文作者

Georgiou, Giorgos, Geffroy, Clément, Bäuerle, Christopher, Roux, Jean-François

论文摘要

长期以来一直忽略了光电开关的效率。到目前为止,“以光学为主导”的设备进入了需要超平稳定电压脉冲的新的和新兴的研究领域,以及功率效率至关重要的新应用。为了解决效率问题,在本文中,我们提出了一种基于3维设计的新型照片导电开关。与传统的平面设计相反,我们的光导电开关通过最大程度地提高设备内的激光吸收,从而大大提高了整体效率,同时优化了电极处的载流子收集效率。为了最大化光学吸收,我们利用光子和等离子模式在我们的设备中激发的光子和等离子模式,这是由于周期性的纳米柱阵列而激发的,而通过将每种纳米甲状腺转换为单个纳米光电导性开关,收集效率通过将每个纳米乳液转换为单一的纳米。我们的数值计算表明,与传统的互插的平面光导电开关相比,总体生成的电流增加了50倍,带宽增加了5倍。这为有效的低功率设备是必不可少的量子科学和技术开辟了许多新的可能性。

The efficiency of photo-conductive switches, which continue to be used for the generation and detection of THz waves, has been overlooked for a long time. The so far 'optics-dominated' devices are making their way through to new and emerging fields of research that require ultrafast picosecond voltage pulses, as well as to new applications where power efficiency is of uttermost importance. To address the efficiency problems, in this article we present a novel photo-conductive switch that is based on a 3-dimensional design. In contrast to conventional planar designs, our photo-conductive switch drastically enhances the overall efficiency by maximising the laser absorption within the device, while at the same time optimising the carrier collection efficiency at the electrodes. To maximise the optical absorption we take advantage of photonic and plasmonic modes that are excited in our device due to a periodic array of nanopillars, whereas the collection efficiency is optimised by converting each nanopillar into a single nano-photo-conductive switch. Our numerical calculations show a 50-fold increase in the overall generated current and a 5-fold bandwidth increase compared to traditional interdigitated planar photo-conductive switches. This opens up a wealth of new possibilities in quantum science and technology where efficient low power devices are indispensable.

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