Lokesh Muruga, Nalupurackal Gokul, Roy Srestha, Chakraborty Snigdhadev, Goswami Jayesh, M Gunaseelan, Roy Basudev
Opt Express. 2022 Aug 1;30(16):28325-28334. doi: 10.1364/OE.462932. Epub 2022 Jul 18.
Typically a rigid body can have three degrees of rotational freedom. Among these, there can be two types of out-of-plane rotational modes, called the pitch and the roll. The pitch motion is typically to turn the particle along an axis orthogonal to the axis of symmetry. However, rotation about the axis of symmetry (called the roll motion) has so far not been shown in optical tweezers. It is here that we use a hexagonal shaped particle (NaYF) which prefers to align side on with the optical tweezers [Rodriguez-Sevilla ., Nano Letters , 8005 (2016)]. In this work, we find that the stable configuration of the hexagonal particle changes while using one beam and two beams, so that when one of the tweezers beams is switched on and off, the particle tends to switch between the different configurations. Thus we get a controlled roll motion. This is the first time that controlled partial roll motions have been generated in optical tweezers.
通常,刚体可以有三个旋转自由度。其中,存在两种类型的面外旋转模式,称为俯仰和滚动。俯仰运动通常是使粒子绕与对称轴正交的轴转动。然而,迄今为止,在光镊中尚未观察到绕对称轴的旋转(称为滚动运动)。在此,我们使用一种六边形粒子(NaYF),它倾向于以侧面与光镊对齐[罗德里格斯 - 塞维利亚等人,《纳米快报》,8005(2016)]。在这项工作中,我们发现使用一束光和两束光时,六边形粒子的稳定构型会发生变化,以至于当其中一束镊子光束开启和关闭时,粒子倾向于在不同构型之间切换。因此,我们实现了可控的滚动运动。这是首次在光镊中产生可控的部分滚动运动。