论文标题

Terahertz成像应用的视频速度石墨烯调制器阵列

Video-speed Graphene Modulator Arrays for Terahertz Imaging Applications

论文作者

Malevich, Yury, Ergoktas, M. Said, Bakan, Gokhan, Steiner, Pietro, Kocabas, Coskun

论文摘要

石墨烯上电气可调的高迁移率电荷产生有效的电流平台,以控制和操纵Terahertz(THZ)波。现实世界应用需要在大型活动区域上具有有效调制的多重THZ设备。但是,高效的门控和开关速度之间的权衡阻碍了这些应用程序的实现。在这里,我们演示了一个大型256像素THZ调制器,该调制器提供高框架速率可重新配置的传输模式。石墨烯设备的时域和频域THZ表征揭示了在石墨烯 - 电解质界面处栅极诱导的电荷和离子堆积的松弛途径。对这些限制因素的基本理解使我们能够打破权衡允许切换频率高达1 kHz的权衡。为了展示这些设备的承诺,我们演示了一个单像素THZ相机,该相机允许对大面积对象的空间和光谱成像,而无需任何移动组件。这些结果为使用基于石墨烯的平台实现非侵入性THZ成像系统提供了重大进步。

Electrically tuneable high mobility charges on graphene yield an efficient electro-optical platform to control and manipulate terahertz (THz) waves. Real-world applications require a multiplex THz device with efficient modulation over a large active area. The trade-off between the efficient gating and switching speed, however, hinders the realization of these applications. Here, we demonstrate a large-format 256-pixel THz modulator which provides high-frame-rate reconfigurable transmission patterns. The time-domain and frequency-domain THz characterizations of graphene devices reveal the relaxation pathways of gate-induced charges and ion packing at graphene-electrolyte interface. The fundamental understanding of these limiting factors enables us to break the trade-off permitting switching frequencies up to 1 kHz. To show the promises of these devices, we demonstrate a single-pixel THz camera which allows spatial and spectroscopic imaging of large-area objects without any moving components. These results provide a significant advancement towards the achievement of non-invasive THz imaging systems using graphene-based platforms.

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