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电子艾里光束的产生。

Generation of electron Airy beams.

机构信息

Department of Physical Electronics, School of Electrical Engineering, Fleischman Faculty of Engineering, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Nature. 2013 Feb 21;494(7437):331-5. doi: 10.1038/nature11840.

Abstract

Within the framework of quantum mechanics, a unique particle wave packet exists in the form of the Airy function. Its counterintuitive properties are revealed as it propagates in time or space: the quantum probability wave packet preserves its shape despite dispersion or diffraction and propagates along a parabolic caustic trajectory, even though no force is applied. This does not contradict Newton's laws of motion, because the wave packet centroid propagates along a straight line. Nearly 30 years later, this wave packet, known as an accelerating Airy beam, was realized in the optical domain; later it was generalized to an orthogonal and complete family of beams that propagate along parabolic trajectories, as well as to beams that propagate along arbitrary convex trajectories. Here we report the experimental generation and observation of the Airy beams of free electrons. These electron Airy beams were generated by diffraction of electrons through a nanoscale hologram, which imprinted on the electrons' wavefunction a cubic phase modulation in the transverse plane. The highest-intensity lobes of the generated beams indeed followed parabolic trajectories. We directly observed a non-spreading electron wavefunction that self-heals, restoring its original shape after passing an obstacle. This holographic generation of electron Airy beams opens up new avenues for steering electronic wave packets like their photonic counterparts, because the wave packets can be imprinted with arbitrary shapes or trajectories.

摘要

在量子力学的框架内,存在一种独特的粒子波包,其形式为艾里函数。当它在时间或空间中传播时,会表现出反直觉的性质:尽管存在弥散或衍射,量子概率波包仍能保持其形状,并沿着抛物线焦散轨迹传播,即使没有力的作用。这并不违反牛顿运动定律,因为波包质心沿着直线传播。近 30 年后,这种波包,即加速艾里光束,在光学领域得到了实现;后来,它被推广到沿抛物线轨迹传播的正交完备光束族,以及沿任意凸轨迹传播的光束。在这里,我们报告了自由电子艾里光束的实验产生和观察。这些电子艾里光束是通过电子通过纳米级全息图的衍射产生的,该全息图在横向平面上对电子的波函数施加了立方相位调制。生成的光束中强度最高的叶瓣确实遵循抛物线轨迹。我们直接观察到了一个非扩展的电子波函数,它可以自我修复,在通过障碍物后恢复其原始形状。这种电子艾里光束的全息产生为像光子那样控制电子波包开辟了新途径,因为可以将波包刻上任意形状或轨迹。

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