论文标题

在经典两梁的干扰中展示回流

Demonstrating backflow in classical two beams' interference

论文作者

Daniel, Anat, Ghosh, Bohnishikha, Gorzkowski, Bernard, Lapkiewicz, Radek

论文摘要

托马斯·杨(Thomas Young)在1801年首先观察到了亮点和深色边缘的著名干扰模式。当两个梁的辐照度相等时,就会发生最大可见性条纹,并且随着梁强度的比率偏离统一,边缘可见性降低。然而,一个有趣的结果可能并非完全直观,是这种不等振幅束的叠加的波前将表现出波浪状的行为。在这项工作中,我们从实验中观察到波浪前的回流现象。回流出现在两个光学(恢复传播的光)和量子力学中,其中局部相位梯度在系统的光谱中不存在。它已成为应用程序的有趣主题,因为它与超级分辨率成像和粒子路径操作中的特征密切相关。首次成功观察回流的尝试仅在最近在光场的组装中进行,这是通过复杂的方式合成波前的。但是,回流被认为很难检测到。在这里,通过利用其最基本形式的干扰,我们揭示了光场中的回流是强大且令人惊讶的常见,它比以前认为的更多。

The well-known interference pattern of bright and dark fringes was first observed for light beams back in 1801 by Thomas Young. The maximum visibility fringes occur when the irradiance of the two beams is equal, and as the ratio of the beam intensities deviates from unity, fringe visibility decreases. An interesting outcome that might not be entirely intuitive, however, is that the wavefront of such unequal amplitude beams' superposition will exhibit a wavy behavior. In this work, we experimentally observe the backflow phenomenon within this wavy wavefront. Backflow appears in both optics (retro-propagating light) and in quantum mechanics where a local phase gradient is not present within the spectrum of the system. It has become an interesting subject for applications as it is closely related to superoscillations whose features are used in super resolution imaging and in a particle's path manipulations. The first successful attempt to observe backflow was made only recently in an assembly of optical fields, by synthesizing their wavefront in a complex manner. Yet, backflow is perceived as hard to detect. Here, by utilizing interference in its most basic form, we reveal that backflow in optical fields is robust and surprisingly common, more than it was previously thought to be.

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