Paper
17 May 2011 Target delivery to sensors by using generated uniform three fiber pseudo Bessel beams from one source
Jongki Kim, Sungrae Lee, Yoonseob Jeong, Kyunghwan Oh
Author Affiliations +
Proceedings Volume 7753, 21st International Conference on Optical Fiber Sensors; 77536U (2011) https://doi.org/10.1117/12.886027
Event: 21st International Conference on Optical Fibre Sensors (OFS21), 2011, Ottawa, Canada
Abstract
A new and flexible method to deliver target particle to sensor through optical trapping with pseudo Bessel beam is presented. Pseudo Bessel beam generator was based upon a Fourier optical system. Single mode fiber (SMF) delivered a fundamental mode without loss. SMF was spliced with Hollow optical fiber (HOF) which served as an annular aperture. A light wave with ring shape was propagated in Coreless Silica Fiber (CSF) and simultaneously transformed a Bessel shape. A Bessel shape with central peak profile will be maintained by a tiny polymer lens on the end of CSF. Delicate control of particle position was enabled by 3 pseudo Bessel beam sources which can be controlled individually. Unique characteristic of Bessel beam allows target particle to have few hundred micrometer tolerance in propagation length and sudden change of propagating direction was achieved by applying another Bessel beam source from other direction. Experimental results on Polystyrene beads which have 4 um diameter are shown. Also, living cell such as Jurkat cell was tested to check practicality.
© (2011) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jongki Kim, Sungrae Lee, Yoonseob Jeong, and Kyunghwan Oh "Target delivery to sensors by using generated uniform three fiber pseudo Bessel beams from one source", Proc. SPIE 7753, 21st International Conference on Optical Fiber Sensors, 77536U (17 May 2011); https://doi.org/10.1117/12.886027
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KEYWORDS
Bessel beams

Sensors

Optical fibers

Single mode fibers

Biosensing

Particles

Optical tweezers

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