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Dynamic control of Bessel beams with longitudinally varying polarization through liquid-crystal anisotropic axicons

Abstract: In this work we discuss liquid-crystal (LC) anisotropic axicons for the dynamic control of the Bessel beam polarization variation along propagation. We first present a technique that employs a LC spatial light modulator (LC-SLM) to display two diffractive axicons, each one affecting one of the two orthogonal linear polarization components. If the two axicons have a slightly different period, a periodic variation in the polarization state of the Bessel beam occurs over propagation. Second, we present a more compact alternative consisting in a combination of a refractive axicon and a LC element of linear phase profile along the radial coordinate. This combination creates a compound compact and tunable anisotropic axicon that produces Bessel beams with tunable polarization modulation. The capability of changing the polarization state of the Bessel beam along its propagation opens new venues in axial polarimetry, optical trapping in multiple planes or axial-dependent laser microfabrication.

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 Autoría: del Mar Sánchez-López M., Moreno I., Jankowski T., Bennis N., Spadlo A., Algorri J.F.,

 Congreso: Liquid Crystals Optics and Photonic Devices (2024 : Estrasburgo, Francia)

 Editorial: SPIE Society of Photo-Optical Instrumentation Engineers

 Fecha de publicación: 18/06/2024

 Nº de páginas: 8

 Tipo de publicación: Comunicación a Congreso

 DOI: 10.1117/12.3016665

 ISSN: 0277-786X,1996-756X

 Proyecto español: PID2021-126509OB-C22

 Url de la publicación: https://doi.org/10.1117/12.3016665

Autoría

SÁNCHEZ LÓPEZ, MARÍA DEL MAR

MORENO, IGNACIO

JANKOWSKI, TOMASZ

BENNIS, NOUREDDINE