Institute for Terahertz Science and Technology, University of California Santa Barbara, Santa Barbara, California 93106, USA.
Opt Lett. 2010 Nov 15;35(22):3799-801. doi: 10.1364/OL.35.003799.
We have developed a rapid scanning terahertz (THz) spectrometer based on a synchronized two-fiber-laser system. When the system is set to the asynchronous optical sampling mode, THz spectra extending to 3 THz can be acquired within 1 μs at a signal-to-noise ratio of the electric field of better than 20. Signal averaging results in a dynamic range of more than 60 dB, and frequency components of more than 4 THz can be detected. When the lasers are set to the same repetition rate, electronically controlled optical sampling at a rate of 2.5 kHz is demonstrated, making the system versatile for different spectroscopic applications. Finally, we compare the THz emission spectra of a photoconductive switch that is pumped at 780 nm and a nonlinear DAST crystal excited at 1550 nm. We find that the spectral range of the spectrometer is significantly enhanced at higher frequencies, while the dynamic range remains constant.
我们开发了一种基于同步双光纤激光系统的快速扫描太赫兹(THz)光谱仪。当系统设置为异步光采样模式时,在信噪比优于 20 的情况下,可在 1μs 内获得扩展至 3 THz 的 THz 光谱。信号平均可获得超过 60 dB 的动态范围,可检测超过 4 THz 的频率分量。当激光设置为相同的重复率时,演示了电子控制的以 2.5 kHz 速率的光采样,使该系统适用于不同的光谱应用。最后,我们比较了在 780nm 激发的光电导开关和在 1550nm 激发的非线性 DAST 晶体的太赫兹发射光谱。我们发现,在较高频率下,光谱仪的光谱范围显著增强,而动态范围保持不变。