Foundation for Research and Technology-Hellas, Institute of Electronic Structure &Laser, P.O. Box 1527, GR-71110 Heraklion (Crete), Greece.
Max Planck Institute of Microstructure Physics, Weinberg 2, D-06120 Halle, Germany.
Sci Rep. 2016 Sep 7;6:32821. doi: 10.1038/srep32821.
We analytically describe the strong-field light-electron interaction using a quantized coherent laser state with arbitrary photon number. We obtain a light-electron wave function which is a closed-form solution of the time-dependent Schrödinger equation (TDSE). This wave function provides information about the quantum optical features of the interaction not accessible by semi-classical theories. With this approach we can reveal the quantum optical properties of high harmonic generation (HHG) process in gases by measuring the photon statistics of the transmitted infrared (IR) laser radiation. This work can lead to novel experiments in high-resolution spectroscopy in extreme-ultraviolet (XUV) and attosecond science without the need to measure the XUV light, while it can pave the way for the development of intense non-classical light sources.
我们使用具有任意光子数的量子相干激光态来分析描述强场光电子相互作用。我们得到了一个光电子波函数,它是含时薛定谔方程(TDSE)的闭式解。这个波函数提供了关于相互作用的量子光学特征的信息,这些信息是半经典理论无法获得的。通过这种方法,我们可以通过测量传输的红外(IR)激光辐射的光子统计来揭示气体中的高次谐波产生(HHG)过程的量子光学性质。这项工作可以在无需测量 XUV 光的情况下,在极紫外(XUV)和阿秒科学中的高分辨率光谱学中开展新的实验,同时也为强非经典光源的发展铺平了道路。