Song Hajun, Hwang Sejin, An Hongsung, Song Ho-Jin, Song Jong-In
Opt Express. 2017 Aug 21;25(17):20718-20726. doi: 10.1364/OE.25.020718.
We propose and demonstrate a continuous-wave vector THz imaging system utilizing a photonic generation of two-tone THz signals and self-mixing detection. The proposed system measures amplitude and phase information simultaneously without the local oscillator reference or phase rotation scheme that is required for heterodyne or homodyne detection. In addition, 2π phase ambiguity that occurs when the sample is thicker than the wavelength of THz radiation can be avoided. In this work, THz signal having two frequency components was generated with a uni-traveling-carrier photodiode and electro-optic modulator on the emitter side and detected with a Schottky barrier diode detector used as a self-mixer on the receiver side. The proposed THz vector imaging system exhibited a 50-dB signal to noise ratio and 0.012-rad phase fluctuation with 100-μs integration time at 325-GHz. With the system, we demonstrate two-dimensional THz phase contrast imaging. Considering the recent use of two-dimensional arrays of Schottky barrier diodes as a THz image sensor, the proposed system is greatly advantageous for realizing a real-time THz vector imaging system due to its simple receiver configuration.
我们提出并演示了一种连续波矢量太赫兹成像系统,该系统利用光子产生双音太赫兹信号并进行自混频检测。所提出的系统无需外差或零差检测所需的本地振荡器参考或相位旋转方案,即可同时测量幅度和相位信息。此外,可以避免当样品厚度大于太赫兹辐射波长时出现的2π相位模糊。在这项工作中,在发射器侧使用单载流子光电二极管和电光调制器产生具有两个频率分量的太赫兹信号,并在接收器侧使用用作自混频器的肖特基势垒二极管探测器进行检测。所提出的太赫兹矢量成像系统在325 GHz频率下,积分时间为100 μs时,信噪比为50 dB,相位波动为0.012 rad。利用该系统,我们展示了二维太赫兹相位对比成像。考虑到最近将肖特基势垒二极管二维阵列用作太赫兹图像传感器,所提出的系统由于其简单的接收器配置,对于实现实时太赫兹矢量成像系统具有很大优势。