Gao Feilong, Jiang Mingzhe, Hou Shaodong
School of Physics Science and Information Technology, Liaocheng University, Liaocheng 252059, China.
Changzhou Inno Machining Ltd., Changzhou 213164, China.
Sensors (Basel). 2024 Aug 22;24(16):5419. doi: 10.3390/s24165419.
In broadband terahertz waves generated by femtosecond lasers, spatial chirp will be simultaneously produced with the introduction of angular dispersion. The chirp characteristics of the terahertz wave will directly affect the frequency response, bandwidth response, and intensity response of the terahertz sensor. To enhance the capability of terahertz sensors, it is necessary to control and improve the chirped characteristics of broadband terahertz sources. We generate a chirped terahertz wave via optical rectification in a LiNbO prism using the technique of pulse front tilt. The effect of the pump-beam spot size on THz generation is systematically studied. The pump's spot size is manipulated using a telescope system. With a pump spot diameter of 1.8 mm, the scanning spectrum of the THz pulse is narrower and is divided into multiple distinct peaks. In contrast, using a pump spot diameter of 3.7 mm leads to increased efficiency in the generation of THz pulses. Also, we investigate the underlying properties governing the generation of chirped terahertz pulses using varying pump pulse spot diameters.
在飞秒激光产生的宽带太赫兹波中,随着角色散的引入会同时产生空间啁啾。太赫兹波的啁啾特性将直接影响太赫兹传感器的频率响应、带宽响应和强度响应。为了提高太赫兹传感器的性能,有必要控制和改善宽带太赫兹源的啁啾特性。我们利用脉冲前沿倾斜技术在LiNbO棱镜中通过光整流产生啁啾太赫兹波。系统地研究了泵浦光束光斑尺寸对太赫兹产生的影响。使用望远镜系统来控制泵浦光斑尺寸。泵浦光斑直径为1.8毫米时,太赫兹脉冲的扫描光谱较窄且分为多个明显的峰值。相比之下,使用3.7毫米的泵浦光斑直径会提高太赫兹脉冲的产生效率。此外,我们还研究了使用不同泵浦脉冲光斑直径产生啁啾太赫兹脉冲的基本特性。