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三维ABEL阱中的单个荧光纳米金刚石。

Single florescent nanodiamond in a three dimensional ABEL trap.

作者信息

Kayci Metin, Radenovic Aleksandra

机构信息

Institute of Bioengineering, Ecole Polytechnique Federale de Lausanne (EPFL) CH -1015 Lausanne, Switzerland.

出版信息

Sci Rep. 2015 Nov 12;5:16669. doi: 10.1038/srep16669.

Abstract

Three dimensional single particle trapping and manipulation is an outstanding challenge in various fields ranging from basic physics to life sciences. By monitoring the response of a trapped particle to a designed environment one can extract its characteristics. In addition, quantum dynamics of a spatially scanned well-known particle can provide environmental information. Precise tracking and positioning of such a particle in aqueous environment is crucial task for achieving nano-scale resolution. Here we experimentally demonstrate three dimensional ABEL trap operating at high frequency by employing a hybrid approach in particle tracking. The particle location in the transverse plane is detected via a scanning laser beam while the axial position is determined by defocused imaging. The scanning of the trapped particle is accomplished through a nano positioning stage integrated to the trap platform.

摘要

三维单粒子捕获与操控是从基础物理到生命科学等各个领域面临的一项重大挑战。通过监测捕获粒子对设计环境的响应,可以提取其特征。此外,对空间扫描的知名粒子进行量子动力学研究可以提供环境信息。在水性环境中对这种粒子进行精确跟踪和定位是实现纳米级分辨率的关键任务。在此,我们通过在粒子跟踪中采用混合方法,实验证明了高频运行的三维ABEL阱。通过扫描激光束检测横向平面内的粒子位置,而轴向位置则通过散焦成像确定。捕获粒子的扫描是通过集成到阱平台的纳米定位台完成的。

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