论文标题

Terahertz光电检测在可伸缩的单层 - 石膏和六边形硝酸硼异质结构中

Terahertz photodetection in scalable single-layer-graphene and hexagonal boron nitride heterostructures

论文作者

Asgari, M., Viti, L., Balci, O., Shinde, S. M., Zhang, J., Ramezani, H., Sharma, S., Meersha, A., Menichetti, G., McAleese, C., Conran, B., Wang, X., Tomadin, A., Ferrari, A. C., Vitiello, M. S.

论文摘要

单层石墨烯(SLG)的独特光电特性非常适合从X射线到微波炉开发光子设备的光子设备的开发。在Terahertz(THZ)范围(0.1-10 THz频率)中,这导致了具有最先进的性能的光学调节器,非线性源和光电轨道的发展。一个关键的挑战是以可扩展的方式将基于SLG的活性元素与先前存在的技术平台集成,同时保持不受干扰的性能水平。在这里,我们报告了大区域SLG中室温检测的开发,该检测是由化学蒸气沉积(CVD)生长的,该室温集成了天线偶联的场效应晶体管中。我们有选择地激活光电电气检测动力学,并在AL2O3上采用不同的介电构型,带有和没有大区域CVD HBN限额,以研究其对SLG热电性能的影响。借助这些可扩展的架构,在零偏置操作下实现了响应时间〜5NS和噪声等效功率〜1NWHz-1/2。这显示了可扩展的大面积,分层材料异质结构用于检测的可行性。

The unique optoelectronic properties of single layer graphene (SLG) are ideal for the development of photonic devices across a broad range of frequencies, from X-rays to microwaves. In the terahertz (THz) range (0.1-10 THz frequency) this has led to the development of optical modulators, non-linear sources, and photodetectors, with state-of-the-art performances. A key challenge is the integration of SLG-based active elements with pre-existing technological platforms in a scalable way, while maintaining performance level unperturbed. Here, we report on the development of room temperature THz detection in large-area SLG, grown by chemical vapor deposition (CVD), integrated in antenna-coupled field effect transistors. We selectively activate the photo-thermoelectric detection dynamics, and we employ different dielectric configurations on SLG on Al2O3 with and without large-area CVD hBN capping to investigate their effect on SLG thermoelectric properties underpinning photodetection. With these scalable architectures, response times ~5ns and noise equivalent powers ~1nWHz-1/2 are achieved under zero-bias operation. This shows the feasibility of scalable, large-area, layered materials heterostructures for THz detection.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源