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Self-action effects in ionization and fragmentation of toluene by femtosecond laser pulses

机译:飞秒激光脉冲在甲苯电离和裂解中的自作用效应

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摘要

Occurrence and influence of several self-action effects, induced in the entrance window of a time-of-flight interaction chamber, on the ion and fragment yields of the toluene molecule in the focus of a Ti:sapphire laser pulse are analyzed. Experimental data are obtained using different focusing geometries and are compared with results from numerical simulations using a nonlinear pulse propagation model as well as those from the strong-field S-matrix theory. It is shown that (a) self-focusing leads to a displacement of the focus while amplified small perturbations of the input beam result in hot spots in the spatial distribution and in an energy-dependent focus area, (b) small self-phase modulation changes the form of the spectrum and broadens it slightly. A strong increase of the toluene fragmentation appears to correlate to linear and nonlinear changes in the focal spot area, while the scenario of excitation of Raman modes proposed in an earlier publication is ruled out as the dominant effect.
机译:分析了飞行时间相互作用室的入射窗中诱导的几种自作用效应对甲苯钛蓝宝石激光脉冲聚焦时甲苯分子的离子和碎片收率的影响。实验数据是使用不同的聚焦几何体获得的,并与使用非线性脉冲传播模型的数值模拟结果以及强场S矩阵理论的结果进行了比较。结果表明:(a)自聚焦导致焦点偏移,而输入光束的放大小扰动导致空间分布和能量依赖的聚焦区域出现热点,(b)小自相位调制改变频谱的形式并稍微扩大频谱。甲苯碎片的强烈增加似乎与焦点区域的线性和非线性变化相关,而早期出版物中提出的激发拉曼模式的场景被认为是主要的影响。

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