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Optical tweezers: theory and practice

Academic Article
Publication Date:
2020
abstract:
The possibility for the manipulation of many different samples using only the light from a laser beam opened the way to a variety of experiments. The technique, known as Optical Tweezers, is nowadays employed in a multitude of applications demonstrating its relevance. Since the pioneering work of Arthur Ashkin, where he used a single strongly focused laser beam, ever more complex experimental set-ups are required in order to perform novel and challenging experiments. Here we provide a comprehensive review of the theoretical background and experimental techniques. We start by giving an overview of the theory of optical forces: first, we consider optical forces in approximated regimes when the particles are much larger (ray optics) or much smaller (dipole approximation) than the light wavelength; then, we discuss the full electromagnetic theory of optical forces with a focus on T-matrix methods. Then, we describe the important aspect of Brownian motion in optical traps and its implementation in optical tweezers simulations. Finally, we provide a general description of typical experimental setups of optical tweezers and calibration techniques with particular emphasis on holographic optical tweezers.
Iris type:
01.01 Articolo in rivista
Keywords:
optical tweezers
List of contributors:
Marago', Onofrio
Authors of the University:
MARAGO' ONOFRIO
Handle:
https://iris.cnr.it/handle/20.500.14243/421699
Published in:
THE EUROPEAN PHYSICAL JOURNAL PLUS
Journal
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