Opt Lett. 2019 Nov 1;44(21):5250-5253. doi: 10.1364/OL.44.005250.
We use machine learning (simulated annealing) to design plasmonic nanoapertures that function as optical nanotweezers. The nanoapertures have irregular shapes that are chosen by our algorithm. We present electromagnetic simulations that show that these produce stronger field enhancements and extraction energies than nanoapertures comprising double nanoholes with the same gap geometry. We show that performance is further improved by etching one or more rings into the gold surrounding the nanoaperture. Lastly, we provide a direct comparison between our design and work that is representative of the state of the art in plasmonic nanotweezers at the time of writing.
我们使用机器学习(模拟退火)来设计等离子体纳米孔,使其充当光学纳米镊子。纳米孔的形状不规则,是由我们的算法选择的。我们进行了电磁模拟,结果表明,与具有相同间隙几何形状的双纳米孔组成的纳米孔相比,这些纳米孔产生了更强的场增强和提取能量。我们表明,通过在纳米孔周围的金中蚀刻一个或多个环,可以进一步提高性能。最后,我们在撰写本文时,将我们的设计与代表等离子体纳米镊子技术现状的工作进行了直接比较。