摘要
超宽谱探测技术对于高分辨率的太赫兹吸收光谱测量以及太赫兹科学研究和应用发展等方面具有重要意义。利用空气等离子体实现了太赫兹超宽谱的测量,并对该探测机制进行了系统的实验研究,利用该探测系统测量了两种炸药奥克托金(HMX)和太胺(PETN)的太赫兹超宽带吸收谱。结果表明太赫兹频谱宽度会随着探测光能量或偏置电场的增加而展宽,随着探测脉冲脉宽的增大而变窄,且利用空气等离子体产生与探测的超宽谱测量在低频区与傅里叶变换红外(FTIR)光谱术有很好的吻合。
Super-broadband spectrum detection technology has an important significance for high-resolution terahertz (THz) absorption spectrum measurements, as well as scientific research and application of terahertz development. We use air plasma as the detection medium and successfully detect super-broadband THz spectra. The detection mechanism is investigated by experiments. We use the system to measure two kinds of explosives' super-broadband absorption spectra. The results indicate that THz spectra widths increase with pump power or bias, and super- broadband absorption spectra match well with Fourier transform infrared (FTIR) peetra in low frequency area.
出处
《激光与光电子学进展》
CSCD
北大核心
2013年第10期198-202,共5页
Laser & Optoelectronics Progress
关键词
光谱学
太赫兹
空气等离子体
相干探测
超宽谱
光谱测量
spectroscopy
terahertz
air plasma
coherent detection
super-broadband spectrum
spectral measurement