Xie Xinhua
Photonics Institute, Vienna University of Technology, A-1040 Vienna, Austria.
Phys Rev Lett. 2015 May 1;114(17):173003. doi: 10.1103/PhysRevLett.114.173003. Epub 2015 Apr 29.
We propose a two-dimensional interferometry based on the electron wave-packet interference by using a cycle-shaped orthogonally polarized two-color laser field. With such a method, the subcycle and intercycle interferences can be disentangled into different directions in the measured photoelectron momentum spectra. The Coulomb influence can be minimized and the overlapping of interference fringes with the complicated low-energy structures can be avoided as well. The contributions of the excitation effect and the long-range Coulomb potential can be traced in the Fourier domain of the photoelectron distribution. Because of these advantages, precise information on valence electron dynamics of atoms or molecules with attosecond temporal resolution and additional spatial information with angstrom resolution can be obtained with the two-dimensional electron wave-packet interferometry.
我们提出了一种基于电子波包干涉的二维干涉测量方法,该方法使用周期形状的正交偏振双色激光场。通过这种方法,子周期和周期间干涉可以在测量的光电子动量谱中解缠到不同方向。库仑影响可以最小化,并且可以避免干涉条纹与复杂的低能结构重叠。激发效应和长程库仑势的贡献可以在光电子分布的傅里叶域中追踪。由于这些优点,利用二维电子波包干涉测量法可以获得具有阿秒时间分辨率的原子或分子价电子动力学的精确信息以及具有埃分辨率的附加空间信息。