Han Zhenyu, Zhang Lei, Li Xiao, Li Yaxin, Qu Tiantao, Yu Xinning, Yu Xudong, Ng Jack, Lin Zhifang, Chen Jun
Opt Express. 2024 Feb 26;32(5):8484-8495. doi: 10.1364/OE.518075.
In photonic systems, bilayer or multilayer systems exhibit numerous exciting phenomena induced by twisting. Thus, it is highly desired to explore the twisting effect by engineering the light-matter interactions. Optical torque, an important means in optical micromanipulation, can rotate micro-objects in various ways, enabling a wide range of promising applications. In this study, we present an interesting phenomenon called "pure optical twist" (POT), which emerges when a bilayer structure with specific symmetry is illuminated by counter-propagating lights with opposite spin and/or orbital angular momentum. Remarkably, this leads to zero net optical torque but yet possesses an interesting mechanical effect of bilayer system twisting. The crucial determinant of this phenomenon is the rotational symmetries of each layer, which govern the allowed azimuthal channels of the scattered wave. When the rotational symmetries do not allow these channels to overlap, no resultant torque is observed. Our work will encourage further exploration of the twisting effect through engineered light-matter interactions. This opens up the possibility of creating twisted bilayer systems using optical means, and constructing a stable bilayer optical motor that maintains identical rotation frequencies for both layers.
在光子系统中,双层或多层系统展现出许多由扭转引发的令人兴奋的现象。因此,通过设计光与物质的相互作用来探索扭转效应是非常有必要的。光学扭矩是光学微操纵中的一种重要手段,它能以各种方式旋转微物体,从而实现一系列有前景的应用。在本研究中,我们展示了一种名为“纯光学扭转”(POT)的有趣现象,当具有特定对称性的双层结构被具有相反自旋和/或轨道角动量的反向传播光照射时就会出现这种现象。值得注意的是,这会导致净光学扭矩为零,但却具有双层系统扭转的有趣机械效应。这种现象的关键决定因素是每层的旋转对称性,它决定了散射波允许的方位角通道。当旋转对称性不允许这些通道重叠时,就不会观察到合成扭矩。我们的工作将鼓励通过设计光与物质的相互作用进一步探索扭转效应。这开辟了利用光学手段创建扭曲双层系统以及构建一个两层都保持相同旋转频率的稳定双层光学马达的可能性。