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Efficient Terahertz detection in black-phosphorus nano-transistors with selective and controllable plasma-wave bolometric and thermoelectric response

机译:具有选择性和可控制的等离子波辐射热和热电响应的黑磷纳米晶体管中的高效太赫兹检测

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摘要

The ability to convert light into an electrical signal with high efficiencies and controllable dynamics, is a major need in photonics and optoelectronics. In the Terahertz (THz) frequency range, with its exceptional application possibilities in high data rate wireless communications, security, night-vision, biomedical or video-imaging and gas sensing, detection technologies providing efficiency and sensitivity performances that can be “engineered” from scratch, remain elusive. Here, by exploiting the inherent electrical and thermal in-plane anisotropy of a flexible thin flake of black-phosphorus (BP), we devise plasma-wave, thermoelectric and bolometric nano-detectors with a selective, switchable and controllable operating mechanism. All devices operates at room-temperature and are integrated on-chip with planar nanoantennas, which provide remarkable efficiencies through light-harvesting in the strongly sub-wavelength device channel. The achieved selective detection (∼5–8 V/W responsivity) and sensitivity performances (signal-to-noise ratio of 500), are here exploited to demonstrate the first concrete application of a phosphorus-based active THz device, for pharmaceutical and quality control imaging of macroscopic samples, in real-time and in a realistic setting.
机译:将光转换为具有高效率和可控动态的电信号的能力是光子学和光电子学的主要需求。在太赫兹(THz)频率范围内,它在高数据速率无线通信,安全性,夜视,生物医学或视频成像和气体传感方面具有非凡的应用可能性,其检测技术可提供可“设计”的效率和灵敏度性能。从头开始,保持难以捉摸的状态。在这里,通过利用柔性的黑色磷薄片(BP)的固有的电和热面内各向异性,我们设计出具有选择性,可切换和可控制的工作机制的等离子波,热电和辐射热纳米探测器。所有器件均在室温下运行,并与平面纳米天线集成在芯片上,通过在强亚波长器件通道中进行光收集,可提供显着的效率。本文利用已实现的选择性检测(〜5–8 V / W响应度)和灵敏度性能(信噪比为500)来演示基于磷的有源太赫兹设备的首次具体应用,以实现药物和高质量在实时和现实的环境中控制宏观样品的成像。

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