Lam Billy, Zhang Jihua, Guo Chunlei
Opt Lett. 2017 Aug 1;42(15):2870-2873. doi: 10.1364/OL.42.002870.
In this study, we develop a simple but highly effective technique that generates a continuously varying polarization within a laser beam. This is achieved by having orthogonal linear polarizations on each side of the beam. By simply focusing such a laser beam, we can attain a gradually and continuously changing polarization within the entire Rayleigh range due to diffraction. To demonstrate this polarization distribution, we apply this laser beam onto a metal surface and create a continuously rotating laser induced periodic surface structure pattern. This technique provides a very effective way to produce complex surface structures that may potentially find applications, such as polarization modulators and metasurfaces.
在本研究中,我们开发了一种简单但高效的技术,该技术可在激光束内产生连续变化的偏振。这是通过在光束的每一侧设置正交线性偏振来实现的。通过简单地聚焦这样的激光束,由于衍射,我们可以在整个瑞利范围内获得逐渐且连续变化的偏振。为了展示这种偏振分布,我们将此激光束照射到金属表面,并创建一个连续旋转的激光诱导周期性表面结构图案。该技术提供了一种非常有效的方法来制造复杂的表面结构,这些结构可能会有潜在应用,例如偏振调制器和超表面。