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Published in: Optical and Quantum Electronics 6/2013

01-06-2013

Focal shift in radially polarized beam with high NA lens axicon by using radial cosine phase wavefront

Authors: K. Prabakaran, K. B. Rajesh, T. V. S. Pillai, R. Chandrasekaran, Z. Jaroszewicz

Published in: Optical and Quantum Electronics | Issue 6/2013

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Abstract

Focal shift in radially polarized beam with radial cosine phase wavefront are investigated theoretically by vector diffraction theory. The wavefront phase distribution is cosine function of radial coordinate. Simulation results show that when the radially polarized beam with radial cosine wavefront phase is focused, the focal pattern differs considerably with frequency parameter in the cosine function term. On increasing C, focus can shift along optical axis and focal pattern changes remarkably. Focus may move in different direction under different condition. Focal shift distance fluctuates on increasing C, and fluctuation amplitude also increases simultaneously. In addition, focal shift direction can also be adjusted by changing frequency parameter in cosine function.

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Metadata
Title
Focal shift in radially polarized beam with high NA lens axicon by using radial cosine phase wavefront
Authors
K. Prabakaran
K. B. Rajesh
T. V. S. Pillai
R. Chandrasekaran
Z. Jaroszewicz
Publication date
01-06-2013
Publisher
Springer US
Published in
Optical and Quantum Electronics / Issue 6/2013
Print ISSN: 0306-8919
Electronic ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-013-9670-8

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