Fast parallel interferometric 3D tracking of numerous optically trapped particles and their hydrodynamic interaction.

Fast parallel interferometric 3D tracking of numerous optically trapped particles and their hydrodynamic interaction.
复制标题

对众多光学捕获粒子及其流体动力学相互作用进行快速并行干涉 3D 跟踪。

DOI:
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发表时间:
2011
期刊:
影响因子:
3.8
通讯作者:
A. Rohrbach
A. Rohrbach
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
D. Ruh;Benjamin Tränkle;A. Rohrbach

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Multi-dimensional, correlated particle tracking is a key technology to reveal dynamic processes in living and synthetic soft matter systems. In this paper we present a new method for tracking micron-sized beads in parallel and in all three dimensions - faster and more precise than existing techniques. Using an acousto-optic deflector and two quadrant-photo-diodes, we can track numerous optically trapped beads at up to tens of kHz with a precision of a few nanometers by back-focal plane interferometry. By time-multiplexing the laser focus, we can calibrate individually all traps and all tracking signals in a few seconds and in 3D. We show 3D histograms and calibration constants for nine beads in a quadratic arrangement, although trapping and tracking is easily possible for more beads also in arbitrary 2D arrangements. As an application, we investigate the hydrodynamic coupling and diffusion anomalies of spheres trapped in a 3 × 3 arrangement.