Step-by-step guide to the realization of advanced optical tweezers

Date

2015-05-05

Authors

Pesce, G.
Volpe, G.
Marago, M. O.
Jones, H. P.
Gigan, S.
Sasso, A.
Volpe, G.

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Source Title

Journal of the Optical Society of America B

Print ISSN

0740-3224

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Optical Society of America

Volume

32

Issue

5

Pages

B84 - B98

Language

English

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Abstract

ince the pioneering work of Arthur Ashkin, optical tweezers (OT) have become an indispensable tool for contactless manipulation of micro- and nanoparticles. Nowadays OT are employed in a myriad of applications demonstrating their importance. While the basic principle of OT is the use of a strongly focused laser beam to trap and manipulate particles, more complex experimental setups are required to perform novel and challenging experiments. With this article, we provide a detailed step-by-step guide for the construction of advanced optical manipulation systems. First, we explain how to build a single-beam OT on a homemade microscope and how to calibrate it. Improving on this design, we realize a holographic OT, which can manipulate independently multiple particles and generate more sophisticated wavefronts such as Laguerre–Gaussian beams. Finally, we explain how to implement a speckle OT, which permits one to employ random speckle light fields for deterministic optical manipulation.

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Published Version (Please cite this version)