Design of a compact device to generate and test beams with orbital angular momentum in the EUV

We present a compact design to generate and test optical-vortex beams with possible applications in the extreme ultraviolet (EUV) region of the electromagnetic spectrum. The device consists of a diffractive mask where both the beam with orbital angular momentum and the reference wavefront to test it...

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Autor principal: Pabon, D.O
Otros Autores: Ledesma, S.A, Quinteiro, G.F, Capeluto, María Gabriela
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: OSA - The Optical Society 2017
Acceso en línea:Registro en Scopus
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100 1 |a Pabon, D.O. 
245 1 0 |a Design of a compact device to generate and test beams with orbital angular momentum in the EUV 
260 |b OSA - The Optical Society  |c 2017 
270 1 0 |m Ledesma, S.A.; Departamento de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires and IFIBA, CONICET, Cuidad UniversitariaArgentina; email: ledesma@df.uba.ar 
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506 |2 openaire  |e Política editorial 
520 3 |a We present a compact design to generate and test optical-vortex beams with possible applications in the extreme ultraviolet (EUV) region of the electromagnetic spectrum. The device consists of a diffractive mask where both the beam with orbital angular momentum and the reference wavefront to test its phase are generated. In order to show that the proposal would work in the EUV, simulations and proof-of-principle experiments were performed, using typical parameters for EUV holography scaled to visible wavelengths. As the simplest case, we consider the well-known Laguerre–Gaussian (LG)-like beams, which have a single vortex in the propagation axis. To further test the versatility of the device, we consider Mathieu beams, more complex structured beams that may contain several vortices. In the experiment, a spatial light modulator was used to display the mask. As examples, we show the results for a LG-like beam with topological charge ℓ = 1 and Mathieu beams with topological charge ℓ = 2 and ellipticity q = 2. These results show the potential of the device to generate a variety of beam shapes at EUV wavelengths. © 2017 Optical Society of America.  |l eng 
536 |a Detalles de la financiación: Agencia Nacional de Promoción Científica y Tecnológica, ANPCyT, 2014-2432, 2013-592, 2014-3537 
536 |a Detalles de la financiación: Consejo Nacional de Investigaciones Científicas y Técnicas, CONICET, PIP2015-2017 112201 501004 75CO 
536 |a Detalles de la financiación: Funding. Agencia Nacional de Promoción de Ciencia y Técnica (ANPCyT) (2013-592, 2014-2432, 2014-3537); Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) (PIP2015-2017 112201 501004 75CO). 
593 |a Departamento de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires and IFIBA, CONICET, Cuidad Universitaria, Buenos Aires, 1428, Argentina 
690 1 0 |a ANGULAR MOMENTUM 
690 1 0 |a EXTREME ULTRAVIOLET LITHOGRAPHY 
690 1 0 |a LIGHT MODULATORS 
690 1 0 |a TOPOLOGY 
690 1 0 |a VORTEX FLOW 
690 1 0 |a ELECTROMAGNETIC SPECTRA 
690 1 0 |a EXTREME ULTRAVIOLETS 
690 1 0 |a OPTICAL VORTEX BEAM 
690 1 0 |a ORBITAL ANGULAR MOMENTUM 
690 1 0 |a PROOF-OF-PRINCIPLE EXPERIMENTS 
690 1 0 |a SPATIAL LIGHT MODULATORS 
690 1 0 |a TOPOLOGICAL CHARGES 
690 1 0 |a VISIBLE WAVELENGTHS 
690 1 0 |a GAUSSIAN BEAMS 
700 1 |a Ledesma, S.A. 
700 1 |a Quinteiro, G.F. 
700 1 |a Capeluto, María Gabriela 
773 0 |d OSA - The Optical Society, 2017  |g v. 56  |h pp. 8048-8054  |k n. 29  |p Appl. Opt.  |x 1559128X  |t Applied Optics 
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