论文标题
两色激光场的Terahertz脉冲产生具有圆极化
Terahertz pulse generation by two-color laser fields with circular polarization
论文作者
论文摘要
我们研究飞秒两色脉冲的极化状态电离气体对发射的Terahertz辐射的影响。当使用圆形偏振激光谐波时,局部电流模型和平面波评估证明了先前报告的对THZ能量产量的影响和(几乎)线性偏振的THZ场。对于此类泵脉冲,THZ产量在两种颜色之间的相对相位是独立的。当泵脉冲具有相同的螺旋性时,THz产量的增加与更长的电离序列和在驱动场中获得的较高的电子横向动量有关。相反,对于两种相反的螺旋性的颜色脉冲,THZ功率的急剧损失来自于由基本脉冲第三次谐波的光电流高度对称响应驱动的破坏性干扰。尽管我们的实验证实了相同螺旋性的圆形极化泵的THZ产量增加,但令人惊讶的是,发射的THZ辐射不会线性偏振。通过全面的3D数值模拟来解释这种效果,该模拟突出了两种颜色的空间比对和非共线传播的作用。
We study the influence of the polarization states of femtosecond two-color pulses ionizing gases on the emitted terahertz radiation. A local-current model and plane-wave evaluations justify the previously-reported impact on the THz energy yield and an (almost) linearly-polarized THz field when using circularly-polarized laser harmonics. For such pump pulses, the THz yield is independent on the relative phase between the two colors. When the pump pulses have same helicity, the increase in the THz yield is associated to longer ionization sequences and higher electron transverse momenta acquired in the driving field. Reversely, for two color pulses with opposite helicity, the dramatic loss of THz power comes from destructive interferences driven by the highly symmetric response of the photocurrents lined up on the third harmonic of the fundamental pulse. While our experiments confirm an increased THz yield for circularly polarized pumps of same helicity, surprisingly, the emitted THz radiation is not linearly-polarized. This effect is explained by means of comprehensive 3D numerical simulations highlighting the role of the spatial alignment and non-collinear propagation of the two colors.