Ofori-Okai Benjamin K, Sivarajah Prasahnt, Ronny Huang W, Nelson Keith A
Opt Express. 2016 Mar 7;24(5):5057-5068. doi: 10.1364/OE.24.005057.
We present a novel method for THz generation in lithium niobate using a reflective stair-step echelon structure. The echelon produces a discretely tilted pulse front with less angular dispersion compared to a high groove-density grating. The THz output was characterized using both a 1-lens and 3-lens imaging system to set the tilt angle at room and cryogenic temperatures. Using broadband 800 nm pulses with a pulse energy of 0.95 mJ and a pulse duration of 70 fs (24 nm FWHM bandwidth, 39 fs transform limited width), we produced THz pulses with field strengths as high as 500 kV/cm and pulse energies as high as 3.1 μJ. The highest conversion efficiency we obtained was 0.33%. In addition, we find that the echelon is easily implemented into an experimental setup for quick alignment and optimization.
我们提出了一种利用反射式阶梯梯形结构在铌酸锂中产生太赫兹波的新方法。与高槽密度光栅相比,该梯形结构产生的脉冲前沿离散倾斜,角色散较小。使用单透镜和三透镜成像系统对太赫兹输出进行表征,以在室温和低温下设置倾斜角。利用脉宽为70 fs(半高宽带宽24 nm,变换极限宽度39 fs)、脉冲能量为0.95 mJ的宽带800 nm脉冲,我们产生了场强高达500 kV/cm、脉冲能量高达3.1 μJ的太赫兹脉冲。我们获得的最高转换效率为0.33%。此外,我们发现该梯形结构易于应用于实验装置中,便于快速对准和优化。