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List of works by Leonardo André Ambrosio

Analytical approach of ordinary frozen waves for optical trapping and micromanipulation

scientific article published on 01 April 2015

Angular spectrum representation of the Bessel-Gauss beam and its approximation: A comparison with the localized approximation

scientific article published in 2022

Diffraction-attenuation resistant beams: their higher-order versions and finite-aperture generations

scientific article published on 01 October 2010

Diffraction-resistant scalar beams generated by a parabolic reflector and a source of spherical waves.

scientific article

Discrete vector frozen waves in generalized Lorenz-Mie theory: linear, azimuthal, and radial polarizations

scientific article published on 01 April 2018

Finite series algorithm design for lens-focused Laguerre–Gauss beams in the generalized Lorenz–Mie theory

scientific article published in 2021

Fundamentals of negative refractive index optical trapping: forces and radiation pressures exerted by focused Gaussian beams using the generalized Lorenz-Mie theory

scientific article published on November 4, 2010

Gradient forces on double-negative particles in optical tweezers using Bessel beams in the ray optics regime

scientific article published on 01 November 2010

Integral localized approximation description of ordinary Bessel beams and application to optical trapping forces

scientific article published on June 9, 2011

Inversion of gradient forces for high refractive index particles in optical trapping.

scientific article

On the validity of the integral localized approximation for Bessel beams and associated radiation pressure forces.

scientific article published in July 2017

Radiation pressure cross sections and optical forces over negative refractive index spherical particles by ordinary Bessel beams.

scientific article

Structuring light under different polarization states within micrometer domains: exact analysis from the Maxwell equations

scientific article published in May 2017

Trapping double negative particles in the ray optics regime using optical tweezers with focused beams.

scientific article published in November 2009