Ellis Jennifer L, Dorney Kevin M, Durfee Charles G, Hernández-García Carlos, Dollar Franklin, Mancuso Christopher A, Fan Tingting, Zusin Dmitriy, Gentry Christian, Grychtol Patrik, Kapteyn Henry C, Murnane Margaret M, Hickstein Daniel D
Opt Express. 2017 May 1;25(9):10126-10144. doi: 10.1364/OE.25.010126.
We investigate the macroscopic physics of noncollinear high harmonic generation (HHG) at high pressures. We make the first experimental demonstration of phase matching of noncollinear high-order-difference-frequency generation at ionization fractions above the critical ionization level, which normally sets an upper limit on the achievable cutoff photon energies. Additionally, we show that noncollinear high-order-sum-frequency generation requires much higher pressures for phase matching than single-beam HHG does, which mitigates the short interaction region in this geometry. We also dramatically increase the experimentally realized cutoff energy of noncollinear circularly polarized HHG, reaching photon energies of 90 eV. Finally, we achieve complete angular separation of high harmonic orders without the use of a spectrometer.
我们研究了高压下非共线高次谐波产生(HHG)的宏观物理学。我们首次通过实验证明了在高于临界电离水平的电离分数下非共线高次差频产生的相位匹配,而临界电离水平通常会对可实现的截止光子能量设置上限。此外,我们表明非共线高次和频产生比单光束HHG需要更高的压力来实现相位匹配,这减轻了这种几何结构中较短的相互作用区域的影响。我们还大幅提高了非共线圆偏振HHG实验实现的截止能量,达到了90电子伏特的光子能量。最后,我们在不使用光谱仪的情况下实现了高谐波阶次的完全角分离。