论文标题
强烈的两色反旋转激光场产生的能量,可调,高胸盘极化的较高谐波
Energetic, tunable, highly-elliptically polarized higher harmonics generated by intense two-color counter rotating laser fields
论文作者
论文摘要
在这项工作中,我们在实验中证明了由强烈的两色反旋转激光电场驱动的AR气体中高涡流高harmonics的有效产生和可调性。由Mazel-TOV设备量身定制的双色光束会产生HHG,其中高度椭圆形HHG辐射的输出光谱可以调整为\ deltae \ hf150mev的能量范围〜20 eV,〜20 eV,每个脉冲〜400 nj的能量在源中。此外,我们采用时间依赖性的密度函数模拟来深入探测谐波椭圆度的依赖性以及分离的atto脉冲对驾驶场参数的强度,并证明了HHG与双裂磁场的稳健性。我们展示了如何通过正确调整第二谐波的中心频率,并连续调节极端紫外线(XUV)高谐光辐射的中心频率。迄今为止,所报道的许多其他激光驱动的Attosond来源的能量值在很大程度上超过了输出能量,并且被证明足以诱导(以及紧密的XUV聚焦几何形状)原子系统中的非线性过程。我们设想,这种可调节的高纤维性HHG光谱可以从几个循环驾驶脉冲的要求中消除设施限制,以造成孤立的圆形脉冲产生。
In this work, we demonstrate experimentally the efficient generation and tunability of energetic highly-elliptical high-harmonics in Ar gas, driven by intense two-color counter rotating laser electric fields. A bi-chromatic beam tailored by a MAZEL-TOV apparatus generates HHG, where the output spectrum of the highly elliptical HHG radiation can be tuned for a energy range of \DeltaE\HF150meV in the spectral range of ~20 eV with energy per pulse EXUV~400 nJ at the source. Furthermore we employ time-dependent density functional simulations to probe in-depth the dependence of the harmonic ellipticity and the strength of the isolated atto pulses on the driving field parameters and demonstrate the robustness of the HHG with the bichromatic field. We show how by properly tuning the central frequency of the second harmonic, the central frequency of the extreme ultraviolet (XUV) high harmonic radiation is continuously tuned. The demonstrated energy values largely exceed the output energy from many other laser driven attosecond sources reported so far and prove to be sufficient for inducing (along with tight XUV focusing geometries) the nonlinear processes in the atomic system. We envisage that such tunable energetic highly-elliptical HHG spectra can remove the facility restrictions from requirements of few-cycle driving pulses for isolated circular attosecond pulse generation.