论文标题
使用光子力的光纤将多个吸收颗粒捕获在空气中
Trapping multiple absorbing particles in air using an optical fiber by photophoretic forces
论文作者
论文摘要
我们通过松散地将高斯束带有一系列具有不同焦距的凸透镜的高斯光束,并研究焦距的依赖性及其大小对焦距的依赖性,从而证明了空气中多个吸收颗粒的光学诱捕。我们观察到特定焦距的粒子链的形成,并测量每个晶状体系统的光学陷阱的动态范围。然后,我们开发一个数值模拟,以通过估计粒子表面的温度分布并确定光生力来解释观察到的诱捕动态范围。我们的仿真结果与实验结果合理地吻合。有趣的是,我们还观察到,随着晶状体焦距的增加,被困颗粒的平均大小会减小,这表明强度梯度可能以某种方式参与了光生捕获的机制。
We demonstrate photophoretic force-based optical trapping of multiple absorbing particles in air by loosely focusing a Gaussian beam with a series of convex lenses of different focal lengths, and investigate the dependence of the number of trapped particles and their sizes on the focal length. We observe the formation of particle chains at a particular focal length, and measure the dynamic range of optical trapping for each lens system. We then develop a numerical simulation to explain the observed dynamic range of trapping by estimating the temperature distribution across a particle surface, and determining the photophoretic force. Our simulation results are in reasonable agreement with experimental results. Interestingly, we also observe that the average size of trapped particles reduces as we increase the lens focal lengths, which suggests that intensity gradients may somehow be involved in the mechanism of photophoretic trapping.