Minamide Hiroaki, Nawata Kouji, Moriguchi Yoshikiyo, Takida Yuma, Notake Takashi
RIKEN Center for Advanced Photonics (RAP), RIKEN, Aoba-ku, Sendai 980-0845, Japan.
Rev Sci Instrum. 2021 Sep 1;92(9):093002. doi: 10.1063/5.0057040.
An injection-seeded terahertz (THz)-wave parametric generator (is-TPG) with a footprint the size of an A3 paper is presented. We improved the measurement performance of the is-TPG source for nondestructive inspection applications. A high pulse repetition rate up to 70 kHz and a low pulse timing jitter of a few tens of picoseconds, which is approximately one ten-thousandth of the conventional is-TPG, were achieved. THz waves exhibited excellent performance with a maximum average output power of 20 µW, a monochromatic spectrum linewidth of ∼20 GHz, and a frequency tuning range of 1.7-3.0 THz. This was achieved by designing the entire system configuration from the pump laser source to THz-wave generation. A new double-pass all-solid-state optical amplifier was developed with a high gain and low noise using an externally pulse-modulated laser diode (LD) as the master oscillator source. An achromatic optical injection system was developed for the is-TPG with a 40% reduction in the conventional path length. They were housed in a single enclosure in two layers. LDs and optical fiber amplifiers could be rack-mounted, and the outputs were delivered to the housing via optical fibers. The developed THz-wave source performed nondestructive imaging of a human hair sample fixed with Scotch tape on a test pattern in an envelope by irradiating 2.1 THz waves. A clearly recognizable THz-wave image of an enclosed hair with a spatial resolution close to the THz wavelength was obtained.
本文介绍了一种占地面积仅为A3纸大小的注入种子太赫兹(THz)波参量发生器(is-TPG)。我们提高了is-TPG源在无损检测应用中的测量性能。实现了高达70 kHz的高脉冲重复率和几十皮秒的低脉冲定时抖动,这大约是传统is-TPG的万分之一。太赫兹波表现出优异的性能,最大平均输出功率为20 μW,单色光谱线宽约为20 GHz,频率调谐范围为1.7 - 3.0 THz。这是通过从泵浦激光源到太赫兹波产生的整个系统配置设计实现的。开发了一种新型双通全固态光放大器,它以外部脉冲调制激光二极管(LD)作为主振荡器源,具有高增益和低噪声。为is-TPG开发了一种消色差光注入系统,传统光路长度减少了40%。它们被安置在一个两层的单一外壳中。LD和光纤放大器可以安装在机架上,输出通过光纤传送到外壳。通过照射2.1 THz波,所开发的太赫兹波源对用透明胶带固定在信封中测试图案上的人发样本进行了无损成像。获得了封闭头发的清晰可辨的太赫兹波图像,其空间分辨率接近太赫兹波长。