Enhanced harmonic generation in metallic funnels driven by short-wave infrared lasers

Lifeng Wang, Seunghwoi Han, Yi Wu, Zenghu Chang
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Abstract

The enhancement effects of an intense short-wavelength infrared laser field in a single micrometer-scale metal funnel were observed in harmonic generation experiments. Low-order harmonics were generated by interacting 32-fs pulses centered at the 2.2-µm wavelength with gases in the funnel structures. The driving laser was an optical parametric amplifier operating at 60-kHz repetition rate. When the peak intensity of the laser beam at the entry of the funnel reached 9.1TW/cm2, third-order harmonic signals were detected. The low limits of the enhancement of the driving laser intensity in 10- and 15-µm funnels were estimated to be 32.4 and 20.8, respectively.
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短波红外激光器驱动的金属漏斗中的增强谐波产生
谐波产生实验观察了单个微米级金属漏斗中强短波红外激光场的增强效应。以 2.2µm 波长为中心的 32-fs 脉冲与漏斗结构中的气体相互作用,产生了低阶谐波。驱动激光器是以 60 kHz 重复频率工作的光参量放大器。当漏斗入口处的激光束峰值强度达到 9.1TW/cm2 时,就能检测到三阶谐波信号。据估计,10 微米和 15 微米漏斗中驱动激光强度增强的低限分别为 32.4 和 20.8。
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