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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Retrieval of the amplitude and phase of the dipole matrix element by attosecond electron-wave-packet interferometry
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Retrieval of the amplitude and phase of the dipole matrix element by attosecond electron-wave-packet interferometry

机译:利用阿秒电子波包干涉法反演偶极矩阵元素的振幅和相位

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摘要

We extend the ideas of wave-packet interferometry to implement the algorithm of spectral phase interferometry for direct electric-field reconstruction (SPIDER) for characterizing the amplitude and phase of electron wave packets. Single-photon ionization by an attosecond pulse launches an electron wave packet in the continuum. Ionization by a train of two attosecond pulses in the presence of a moderate infrared pulse creates an interferogram in the final photoelectron momentum distribution. From the interferogram, the complex electron wave function can be reconstructed. If the pulses are well characterized, the amplitude and phase of the bound-free dipole matrix element can be reconstructed over a wide energy range. This is demonstrated by application of the retrieval method to momentum distributions obtained by numerical solution of the time-dependent Schr?dinger equation. The case of Coulombic potentials requires appropriate treatment of the laser-Coulomb coupled dynamics.
机译:我们扩展了波包干涉测量的思想,以实现用于直接电场重建(SPIDER)的频谱相位干涉测量算法,以表征电子波包的幅度和相位。阿秒脉冲的单光子电离在连续体内发射电子波包。在适度的红外脉冲存在下,由两个阿秒脉冲组成的序列进行电离,在最终的光电子动量分布中产生干涉图。根据干涉图,可以重建复电子波函数。如果对脉冲进行了很好的表征,则可以在很宽的能量范围内重建无界偶极子矩阵元素的幅度和相位。通过将检索方法应用于通过时变薛定r方程的数值解获得的动量分布,可以证明这一点。库仑势的情况需要对激光-库仑耦合动力学进行适当处理。

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