高速高精度单发太赫兹检测传感器设计和应用
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1.南京大学;2.南京航空航天大学

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O433.1

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国家重点研发计划(2022YFB3206901)


Design and application of high-speed and high-precision single terahertz detection sensor
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    摘要:

    单发太赫兹时域光谱技术通过空间编码实现太赫兹波形快速测量,但其应用受限于较低的系统精度。针对探测器满阱容量限制探测精度的问题,本研究揭示了通过调控探测光强抑制主导噪声源(散粒噪声)的机制。基于此,针对性设计了单发太赫兹检测专用的高速高精度传感器。该传感器允许使用更高探测光强而不饱和,有效降低散粒噪声占比,从而显著提升系统整体精度。在5kHz系统重频下,一秒内系统测得最小可探测的太赫兹信号为2.55×10-4 kV/cm,相较于单点检测,在保证测量获得同样信息量的情况下,节省30倍时间。该研究为进一步开发高精度单发太赫兹系统,为快速复杂多维太赫兹光谱实验提供了关键支撑。

    Abstract:

    Single-shot terahertz time-domain spectroscopy (THz-TDS) leverages spatial encoding to rapidly measure terahertz (THz) waveforms, yet its application is limited by relatively low system precision. To address the issue that a detector’s detection accuracy is limited by its full-well capacity, this work elucidates the mechanism by which tuning the probe-light intensity suppresses the dominant noise source, namely the shot noise. Based on this mechanism, we designed a high-speed, high-precision sensor dedicated to single-shot THz detection. The sensor tolerates higher probe-light intensities without saturation, effectively reducing the relative contribution of shot noise and thereby significantly improving overall system precision. At a system repetition rate of 5 kHz, the minimum detectable terahertz field was measured to be 2.55×10-4 kV/cm kV/cm within one second. Compared with single-point detection, a 30-fold reduction in measurement time is achieved while maintaining the same information content. This work paves the way for further development of high-precision single-shot THz systems and rapid, complex, multi-dimensional THz spectroscopic experiments.

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历史
  • 收稿日期:2025-09-02
  • 最后修改日期:2025-11-10
  • 录用日期:2025-11-12
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