对映体
分类
手性(物理)
压力梯度力
纳米结构
化学物理
光子学
光学力
材料科学
纳米技术
化学
光学镊子
物理
光学
光电子学
立体化学
计算机科学
手征对称性
量子力学
Nambu–Jona Lasinio模型
夸克
程序设计语言
作者
Jun Yao,Yihua Bai,Yidong Liu,Jian Wang,Yuanjie Yang
摘要
Enantiomer sorting greatly promotes the advancement of chemistry, bioscience, and medicine while also facing significant challenges. Recently, all-optical solutions have attracted considerable interest due to their non-invasiveness. While, it should be noted that the achiral optical force is always much larger than the chiral gradient force that plays a key role in all-optical enantiomer sorting, hindering the separation of enantiomers. Previously proposed methods to boost the chiral gradient forces by plasmonic and photonic nanostructures are often accompanied by the enhancement of achiral optical forces. The sorted chiral particles are also difficult to be transferred from the complex nanostructures. Here, we propose an approach for separating enantiomers using uniform light field formed by two waves, which is capable of sorting deep sub-wavelength chiral particles. In our method, the chiral particles can be sorted within a simple planar structure while the achiral gradient force is equal to zero. Our research reveals a promising perspective on large-scale sorting for enantiomers.
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