We demonstrate that any two-dimensional accelerating beam can be described in a canonical form in Fourier space. In particular, we demonstrate that there is a one-to-one correspondence between complex functions in the real line (the line spectrum) and accelerating beams. An arbitrary line spectrum can be used to generate novel accelerating beams with diverse transverse shapes. The line spectra for the special cases of the families of Airy and accelerating parabolic beams are provided
Accelerating beams, of which the Airy beam is an important representative, are characterized by inte...
We investigate the acceleration dynamics of quasi-diffraction-free Airy beams in both one- and two-d...
We study curved trajectory dynamics and design in discrete array settings. We find that beams with p...
We demonstrate that any two-dimensional accelerating beam can be described in a canonical form in Fo...
We demonstrate the existence of accelerating parabolic beams that constitute, together with the Airy...
We report the first observation of accelerating parabolic beams. These accelerating parabolic beams ...
We generate both accelerated Airy and accelerated parabolic beams using phase-only patterns encoded ...
We introduce the generalized Airy-Gauss (AiG) beams and analyze their propagation through optical sy...
We report on a novel kind of accelerating beams that follow parabolic paths in free space. In fact, ...
International audienceWe report the observation of arbitrary accelerating beams (ABs) designed using...
We introduce the concept of spatially accelerating (curved) beam waves in the Fresnel region of prop...
International audienceAccelerating beams are a novel class of optical waves where the localized inte...
We investigate the acceleration dynamics of quasi-diffraction-free Airy beams in both one- and two-d...
Over the years, non-spreading or non-diffracting wave configurations have been systematically invest...
We investigate the propagation of Airy beams in linear gradient index inhomogeneous media. We demons...
Accelerating beams, of which the Airy beam is an important representative, are characterized by inte...
We investigate the acceleration dynamics of quasi-diffraction-free Airy beams in both one- and two-d...
We study curved trajectory dynamics and design in discrete array settings. We find that beams with p...
We demonstrate that any two-dimensional accelerating beam can be described in a canonical form in Fo...
We demonstrate the existence of accelerating parabolic beams that constitute, together with the Airy...
We report the first observation of accelerating parabolic beams. These accelerating parabolic beams ...
We generate both accelerated Airy and accelerated parabolic beams using phase-only patterns encoded ...
We introduce the generalized Airy-Gauss (AiG) beams and analyze their propagation through optical sy...
We report on a novel kind of accelerating beams that follow parabolic paths in free space. In fact, ...
International audienceWe report the observation of arbitrary accelerating beams (ABs) designed using...
We introduce the concept of spatially accelerating (curved) beam waves in the Fresnel region of prop...
International audienceAccelerating beams are a novel class of optical waves where the localized inte...
We investigate the acceleration dynamics of quasi-diffraction-free Airy beams in both one- and two-d...
Over the years, non-spreading or non-diffracting wave configurations have been systematically invest...
We investigate the propagation of Airy beams in linear gradient index inhomogeneous media. We demons...
Accelerating beams, of which the Airy beam is an important representative, are characterized by inte...
We investigate the acceleration dynamics of quasi-diffraction-free Airy beams in both one- and two-d...
We study curved trajectory dynamics and design in discrete array settings. We find that beams with p...