论文标题
超级1 MHz真空 - 硫化物源通过高硫磺的谐波产生负面的空心核纤维
Ultrafast 1 MHz vacuum-ultraviolet source via highly cascaded harmonic generation in negative-curvature hollow-core fibers
论文作者
论文摘要
真空紫外线(VUV)的光对于研究分子和材料的研究至关重要,但是事实证明,以高重复速率以高重复速率在VUV区域的产生飞秒脉冲至关重要。在这里,我们使用高曲率的空心核纤维中的高级联的四波混合过程来证明MHz重复速率以MHz重复速率的有效产生。直到第15个谐波(69 nm,18.0 eV),均匀和奇数谐波都产生,高能分辨率约为40 meV。与直接高谐波生成相反,这种高度级联的谐波生成过程需要较低的峰强度,因此可以在紧凑的设置中以强大的〜10 W纤维激光系统驱动,以较高的重复速率运行。此外,我们提供了数值模拟,以探讨高级联谐波产生的基本功能和时空动力学。该VUV来源可以增强分子和量子材料的光谱的能力,例如光电离质谱和时间,角度和自旋分辨光发射。
Vacuum ultraviolet (VUV) light is critical for the study of molecules and materials, but the generation of femtosecond pulses in the VUV region at high repetition rates has proven difficult. Here, we demonstrate the efficient generation of VUV light at MHz repetition rates using highly cascaded four-wave mixing processes in a negative-curvature hollow-core fiber. Both even and odd order harmonics are generated up to the 15th harmonic (69 nm, 18.0 eV), with high energy resolution of ~40 meV. In contrast to direct high harmonic generation, this highly cascaded harmonic generation process requires lower peak intensity and therefore can operate at higher repetition rates, driven by a robust ~10 W fiber-laser system in a compact setup. Additionally, we present numerical simulations that explore the fundamental capabilities and spatiotemporal dynamics of highly cascaded harmonic generation. This VUV source can enhance the capabilities of spectroscopies of molecular and quantum materials, such as photoionization mass spectrometry and time , angle , and spin-resolved photoemission.