论文标题
THZ在丘比特中的非线性光学响应:HIGGS模式下BCS响应的占主导地位
THz non-linear optical response in cuprates: predominance of the BCS response over the Higgs mode
论文作者
论文摘要
在非常规库酸盐超导体中,具有强大THZ场的最新实验清楚地证明了在超导临界温度TC以下的非线性光学响应的增加。与常规超导体一样,为了解释实验发现,需要对导致非线性反应的各种效应进行理论估计。在这里,我们报告了对现实模型中的丘比特中非线性THZ光学核的详细定量分析,这是对这些系统的频带结构和障碍水平的解释。我们表明,BCS准粒子响应是对丘陵的主要贡献,其极化依赖性很好地说明了第三次谐波生成测量值。另一方面,Thz Kerr效应的极化依赖性仅由我们的计算部分捕获,这表明当使用具有不同中心频率的光脉冲探测系统时,存在其他效果。
Recent experiments with strong THz fields in unconventional cuprates superconductors have clearly evidenced an increase of the non-linear optical response below the superconducting critical temperature Tc. As in the case of conventional superconductors, a theoretical estimate of the various effects contributing to the non-linear response is needed in order to interpret the experimental findings. Here we report a detailed quantitative analysis of the non-linear THz optical kernel in cuprates within a realistic model, accounting for the band structure and disorder level appropriate for these systems. We show that the BCS quasiparticle response is the dominant contribution for cuprates, and its polarization dependence accounts very well for the third-harmonic generation measurements. On the other hand, the polarization dependence of the THz Kerr effect is only partly captured by our calculations, suggesting the presence of additional effects when the system is probed using light pulses with different central frequencies.