论文标题

使用量子光的自由电子形状

Free-Electron Shaping Using Quantum Light

论文作者

Di Giulio, Valerio, de Abajo, F. Javier García

论文摘要

控制游离电子的波函数对于改善电子显微镜的空间分辨率,电子与感兴趣样本模式的效率以及我们在纳米级探测超快材料动力学的能力很重要。在这种情况下,最近通过与纳米结构上的超短激光脉冲散射,随后是自由电子传播所产生的近场,已通过与近场激光脉冲产生的近场相互作用来证明Attsond Electron压缩。在这里,我们表明,可以通过与量子光相互作用替换相干激光激发来改善对电子脉冲成型,压缩和统计的控制。我们发现,通过使用相斑点的光加速了压缩,以加速固定的光学强度,而振幅挤压会产生超耗尽双脉冲轮廓。产生的电子脉冲与光学塔尔伯特效应完全类似于定期复兴。我们进一步揭示了通过与调制电子的相互作用在样品中产生的相干非常依赖于调制光的统计数据,而样品密度矩阵的对角线部分将减少到泊松分布,而不论用于塑造电子的光的类型。本研究为生成自由电子脉冲的新方向提供了对持续时间,形状和统计数据的额外控制,这直接影响了它们与样品的相互作用。

Controlling the wave function of free electrons is important to improve the spatial resolution of electron microscopes, the efficiency of electron interaction with sample modes of interest, and our ability to probe ultrafast materials dynamics at the nanoscale. In this context, attosecond electron compression has been recently demonstrated through interaction with the near fields created by scattering of ultrashort laser pulses at nanostructures followed by free electron propagation. Here, we show that control over electron pulse shaping, compression, and statistics can be improved by replacing coherent laser excitation by interaction with quantum light. We find that compression is accelerated for fixed optical intensity by using phase-squeezed light, while amplitude squeezing produces ultrashort double-pulse profiles. The generated electron pulses exhibit periodic revivals in complete analogy to the optical Talbot effect. We further reveal that the coherences created in a sample by interaction with the modulated electron are strongly dependent on the statistics of the modulating light, while the diagonal part of the sample density matrix reduces to a Poissonian distribution regardless of the type of light used to shape the electron. The present study opens a new direction toward the generation of free electron pulses with additional control over duration, shape, and statistics, which directly affect their interaction with a sample.

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