论文标题

用于敏感的Terahertz检测的隧道现场效应晶体管

Tunnel field-effect transistors for sensitive terahertz detection

论文作者

Gayduchenko, Igor, Xu, Shuigang, Alymov, Georgy, Moskotin, Maxim, Tretyakov, Ivan, Taniguchi, Takashi, Watanabe, Kenji, Goltsman, Gregory, Geim, Andre K., Fedorov, Georgy, Svintsov, Dmitry, Bandurin, Denis A.

论文摘要

电磁波对直流电流的纠正是能量收集,超过5G无线通信,超快速科学和观察天文学的关键过程。随着辐射频率升高到亚曲纳兹(THZ)域,传统电子设备的AC-DC转换变得具有挑战性,需要替代的整流协议。在这里,我们通过由双层石墨烯(BLG)制成的隧道场效应晶体管来应对这一挑战。利用BLG的电气调节带结构,我们创建了一个横向隧道连接点,并将其搭配到暴露于THZ辐射的天线。然后,隧道连接非线性将传入的辐射降低,从而导致高反应性(> 4 kV/w)和低噪声(0.2 pw/$ \ sqrt {\ sqrt {\ mathrm {hz}} $} $} $})检测。我们证明了与发达的理论一致的几个数量级,从本内欧姆的切换到带式隧道式制度如何提高探测器的响应性。我们的工作证明了隧道晶体管在THZ检测中的潜在应用,并揭示了BLG作为有前途的平台。

The rectification of electromagnetic waves to direct currents is a crucial process for energy harvesting, beyond-5G wireless communications, ultra-fast science, and observational astronomy. As the radiation frequency is raised to the sub-terahertz (THz) domain, ac-to-dc conversion by conventional electronics becomes challenging and requires alternative rectification protocols. Here we address this challenge by tunnel field-effect transistors made of bilayer graphene (BLG). Taking advantage of BLG's electrically tunable band structure, we create a lateral tunnel junction and couple it to an antenna exposed to THz radiation. The incoming radiation is then down-converted by the tunnel junction nonlinearity, resulting in high-responsivity (> 4 kV/W) and low-noise (0.2 pW/$\sqrt{\mathrm{Hz}}$}) detection. We demonstrate how switching from intraband Ohmic to interband tunneling regime can raise detectors' responsivity by few orders of magnitude, in agreement with the developed theory. Our work demonstrates a potential application of tunnel transistors for THz detection and reveals BLG as a promising platform therefor.

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