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Features of the gouy phase of nondiffracting beams
(E M W Publishing, 2013-06)
It is shown how the linear Gouy phase of an ideal nondiffracting beam of ±(k-kz)z form, with kz being the projection of the wavevector of modulus k of the plane wave spectrum onto the propagation axis z, is built from a ...
Superposition of monochromatic Bessel beams in (k(p), k(z))-plane to obtain wave focusing: Spatial localized waves
(Elsevier Science BvAmsterdamHolanda, 2005)
A general theory for the Frozen Waves and their realization through finite apertures
(Elsevier Science BvAmsterdamHolanda, 2006)
General formulation for the analysis of scalar diffraction-free beams using angular modulation: Mathieu and Bessel beams
(Elsevier Science BvAmsterdamHolanda, 2003)
Properties of a localized Mathieu pulse
(Optical Soc AmerWashingtonEUA, 2004)
Analysis of on-axis wave focusing through the use of non annular slits
(Elsevier Science BvAmsterdamHolanda, 2004)
Modeling the spatial shape of nondiffracting beams: Experimental generation of Frozen Waves via holographic method
(Elsevier Science BvAmsterdamHolanda, 2014)
Production Of Dynamic Frozen Waves: Controlling Shape, Location (and Speed) Of Diffraction-resistant Beams
(OPTICAL SOC AMERWASHINGTON, 2015)
Study of Frozen Waves' theory through a continuous superposition of Bessel beams
(Elsevier Sci LtdOxfordInglaterra, 2007)