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Generation of low-order harmonics in laser ablation plasmas

机译:激光烧蚀等离子体中低阶谐波的产生

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The third and fifth harmonics of a pulsed infrared laser (1064nm) delivering pulses of nanosecond duration have been generated in the laser ablation plasmas of various materials including the metals Al and Fe and the highly ionic insulators MgF _2 and NaCl. The harmonics were generated in a process triggered by laser ablation followed by frequency up-conversion of the fundamental laser beam that propagates parallel to the target surface. The spatial and temporal behaviour of the harmonics reveals the distinctive composition and dynamics of each plasma, gives insight into the species that act as nonlinear media and allows a comparison of different processes that control the generation efficiency. Low-order harmonic generation thus emerges as a powerful and universal technique for monitoring and diagnostics of ablation plasmas, and the results presented serve to guide the choice of solid materials for efficient high harmonic generation using ultrashort pulses in the femtosecond regime.
机译:在包括金属Al和Fe以及高离子绝缘体MgF _2和NaCl在内的各种材料的激光烧蚀等离子体中,产生了传递纳秒级脉冲的脉冲红外激光(1064nm)的三次谐波和三次谐波。谐波是在激光烧蚀,随后平行于目标表面传播的基本激光束的频率上变频触发的过程中产生的。谐波的时空行为揭示了每个等离子体的独特组成和动力学,洞察了充当非线性介质的物种,并允许比较控制发电效率的不同过程。因此,低阶谐波的产生成为监测和诊断消融等离子体的有力且通用的技术,并且所给出的结果可指导选择材料,以便在飞秒范围内使用超短脉冲有效地产生高谐波。

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