论文标题

轨道角动量叠加态在透射电子显微镜和双色多光子电离中

Orbital angular momentum superposition states in transmission electron microscopy and bichromatic multiphoton ionization

论文作者

Eickhoff, K., Rathje, C., Köhnke, D., Kerbstadt, S., Englert, L., Bayer, T., Schäfer, S., Wollenhaupt, M.

论文摘要

电子束和超快电子波包动力学的相干控制吸引了电子显微镜以及原子物理学的关注。 In order to unify the conceptual pictures developed in both fields, we demonstrate the generation and manipulation of tailored electron orbital angular momentum (OAM) superposition states either by employing customized holographic diffraction masks in a transmission electron microscope or by atomic multiphoton ionization utilizing pulse-shaper generated carrier-envelope phase stable bichromatic ultrashort laser pulses.两种技术都遵循基于量子机械叠加态的傅立叶合成的类似物理机制,允许制备一组不常见对称性的电子状态。我们根据先进的空间和光谱双缝隙在统一图片中描述两种方法,并指出重要的类比。此外,我们分析了拓扑电荷,并讨论了自由电子OAM叠加状态的控制机制。在7倍旋转的对称电子密度分布上说明了它们在透射电子显微镜和原子多光电离中通过相裁缝的产生和操纵。

The coherent control of electron beams and ultrafast electron wave packets dynamics have attracted significant attention in electron microscopy as well as in atomic physics. In order to unify the conceptual pictures developed in both fields, we demonstrate the generation and manipulation of tailored electron orbital angular momentum (OAM) superposition states either by employing customized holographic diffraction masks in a transmission electron microscope or by atomic multiphoton ionization utilizing pulse-shaper generated carrier-envelope phase stable bichromatic ultrashort laser pulses. Both techniques follow similar physical mechanisms based on Fourier synthesis of quantum mechanical superposition states allowing the preparation of a broad set of electron states with uncommon symmetries. We describe both approaches in a unified picture based on an advanced spatial and spectral double slit and point out important analogies. In addition, we analyze the topological charge and discuss the control mechanisms of the free-electron OAM superposition states. Their generation and manipulation by phase tailoring in transmission electron microscopy and atomic multiphoton ionization is illustrated on a 7-fold rotationally symmetric electron density distribution.

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