首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Bolometric detection of terahertz quantum cascade laser radiation with graphene-plasmonic antenna arrays
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Bolometric detection of terahertz quantum cascade laser radiation with graphene-plasmonic antenna arrays

机译:具有石墨 - 代阵天线阵列的Terahertz量子级联激光辐射的辐射测定检测

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摘要

We present a fast room temperature terahertz detector based on graphene loaded plasmonic antenna arrays. The antenna elements, which are arranged in series and are shorted by graphene, are contacting source and drain metallic pads, thus providing both the optical resonant element and the electrodes. The distance between the antenna's arms of approximately 300 nm allows a strong field enhancement in the graphene region, when the incident radiation is resonant with the antennas. The current passing through the source and drain is dependent on the graphene's conductivity, which is modified by the power impinging onto the detector as well as from the biasing back-gate voltage. The incident radiation power is thus translated into a current modification, with the main detection mechanism being attributed to the bolometric effect. The device has been characterized and tested with two bound to continuum terahertz quantum cascade lasers emitting at a single frequency around 2 THz and 2.7 THz yielding a maximum responsivity of similar to 2 mA W-1.
机译:我们提供了一个基于石墨烯装载等离子体天线阵列的快速室温太赫兹探测器。串联布置并由石墨烯短路的天线元件是接触源和漏矿金属焊盘,从而提供光学谐振元件和电极。当入射辐射与天线谐振时,天线的天线臂之间的距离约为300nm的距离允许在石墨烯区域中增强。通过源极和漏极的电流取决于石墨烯的电导率,其通过撞击检测器的功率和偏置背栅电压来修改。因此,入射辐射功率转换成电流修改,主要检测机构归因于辐射效应。该装置已经表征和测试,用两个绑定到连续的连续体级级级联激光器,在左右2THz的单个频率发射,2.7 THz产生类似于2 mA W-1的最大响应率。

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