论文标题

老虎:时间门控电场重建

TIGER: TIme-Gated Electric field Reconstruction

论文作者

Billard, F., Sharma, R., Hertz, E., Faucher, O., Béjot, P.

论文摘要

我们提出了一种新型的自我引用方法,用于超短光激光脉冲的完整时间表征(相和振幅)。该技术称为时间门控电场重建(Tiger),测量了由四个输入脉冲的四个时间删除的复制品产生的二阶非线性信号(即第二次谐波产生或两光子吸收)。使用四面金字塔样光学元件在梁曲线中在空间上编码延迟。与众所周知的自我引用的表征方法相比,提出的技术可以实现单个射击测量,并且不需要任何光谱测量。根据所选的几何形状,记录的老虎信号可以是干涉率(即载体频率已解决)或强度。本文描述了设备的原理操作以及详细的理论分析。然后介绍了各种激光脉冲形状及其重建的老虎测量,以证明这种原始方法的相关性。

We present a novel self-referenced method for the complete temporal characterization (phase and amplitude) of ultrashort optical laser pulses. The technique, called TIme-Gated Electric field Reconstruction (TIGER), measures a second-order nonlinear signal (namely, second harmonic generation or two-photon absorption) produced by four time-delayed replicas of the input pulse. The delays are spatially encoded in the beam profile using a four-faced pyramid-like optical element. The presented technique enables single shot measurement and does not require any spectral measurements, in contrast with well-known self-referenced characterization methods. Depending on the chosen geometry, the recorded TIGER signal can be either interferometric (i.e., carrier frequency resolved) or intensimetric. This paper describes the principle operation of the device together with a detailed theoretical analysis. TIGER measurements of various laser pulse shapes with their reconstructions are then presented demonstrating the relevance of this original approach.

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