South China University of Technology, Guangzhou, China.
Lomonosov Moscow State University, Leninskye Gory, Moscow, Russia.
PLoS One. 2022 Oct 14;17(10):e0268228. doi: 10.1371/journal.pone.0268228. eCollection 2022.
Infrared and THz optics has many promising practical applications such as in spectroscopy, diagnostic, optical metrology, sensing, and many others. Due to limited number of IR radiation sources, the frequency down-conversion processes are widely used for obtaining infrared radiation. Among them, the most applicable method is a generation of wave with difference frequency under the three-waves interaction in a medium with quadratic nonlinear response. Below we propose a new effective tool for three times decreasing frequency of the incident pulse based on three-waves interaction in a medium with the quadratic susceptibility. At such interaction, a medium's response inherent cubic non-linearity appears due to so-called cascading SHG. The frequency down-conversion process possesses two stable modes. This is shown using multi-scale method. For each of the modes, the analytical solution is developed in the framework of the long pulse duration approximation without using the pump energy non-depletion approximation. The computer simulation results confirm those of analytical analysis. We show that the conversion efficiency of the incidentpump pulse energy achieves about 70%, if the low frequency wave incident intensity equals zero, or almost 100%, if the incident intensity of the low frequency wave is non-zero. The developed theoretical approach may be applied to other processes of the frequency down-conversion.
红外和太赫兹光学在光谱学、诊断学、光学计量学、传感等领域具有许多有前途的实际应用。由于红外辐射源数量有限,因此广泛使用频率下转换过程来获得红外辐射。其中,最适用的方法是在具有二次非线性响应的介质中通过三波相互作用产生差频波。在下面的工作中,我们提出了一种新的有效工具,基于二次灵敏度介质中的三波相互作用,可将入射脉冲的频率降低三倍。在这种相互作用下,由于所谓的级联二次谐波产生,介质的固有立方非线性会出现响应。频率下转换过程具有两种稳定模式。这是使用多尺度方法显示的。对于每种模式,在不使用泵浦能量非耗竭近似的情况下,在长脉冲持续时间近似的框架内开发了分析解决方案。计算机模拟结果证实了分析结果。我们表明,如果低频波的入射强度为零,则入射泵浦脉冲能量的转换效率约为 70%,如果低频波的入射强度不为零,则转换效率几乎为 100%。所开发的理论方法可应用于其他频率下转换过程。