The intensity distribution of a partially coherent beam with a nonconventional correlation function, named the multi-Gaussian Schell-model (MGSM) beam, focused by an axicon was investigated in detail. Our numerical results showed that an optical needle with a flat-topped spatial profile and long focal depth was formed and that we can modulate the focal shift and focal depth of the optical needle by varying the width of the degree of coherence (DOC) and the parameters of the correlation function. The adjustable optical needle can be applied for electron acceleration, particle trapping, fiber coupling and percussion drilling
We derive a general law for the M-2 factor of any beam generated by a partially coherent Schell-mode...
The theory of partial coherence is a field of interest due to its applications in many branches of p...
Lens-axicon doublets have been used to produce Bessel-Gaussian beams, a narrow non-diffracting beam ...
An adjustable optical cage generated by focusing a partially coherent beam with nonconventional corr...
Using the extended Huygens-Fresnel principle, a cross-spectral density formula was developed for a G...
To date, all of the Laguerre-Gaussian (LG) correlated Schell-model beams proposed and studied are re...
An efficient optical system is proposed to generate a partially coherent flat-topped (FT) beam theor...
Axicons with the ability to convert Gaussian beams into non-diffracting Bessel beams are well-known ...
We study theoretically and experimentally the spatial intensity distribution of the zero-order Besse...
Propagation of generalized multi-Gaussian correlated Schell-model (GMGCSM) beams through four-level ...
Non-diffracting optical quasi-Bessel beams provide an opportunity to construct optical fields of com...
[en] The focusing properties of a so-called reflaxicon (a combination of a diverging and a convergin...
We propose an optical element: a phase-shifted Fresnel axicon for generation of multiple Bessel beam...
We have developed a high-aspect ratio optical pipeline aiming to produce a highly collimated stream ...
Based on the cross-spectral density matrix, closed form result for propagation equation of electroma...
We derive a general law for the M-2 factor of any beam generated by a partially coherent Schell-mode...
The theory of partial coherence is a field of interest due to its applications in many branches of p...
Lens-axicon doublets have been used to produce Bessel-Gaussian beams, a narrow non-diffracting beam ...
An adjustable optical cage generated by focusing a partially coherent beam with nonconventional corr...
Using the extended Huygens-Fresnel principle, a cross-spectral density formula was developed for a G...
To date, all of the Laguerre-Gaussian (LG) correlated Schell-model beams proposed and studied are re...
An efficient optical system is proposed to generate a partially coherent flat-topped (FT) beam theor...
Axicons with the ability to convert Gaussian beams into non-diffracting Bessel beams are well-known ...
We study theoretically and experimentally the spatial intensity distribution of the zero-order Besse...
Propagation of generalized multi-Gaussian correlated Schell-model (GMGCSM) beams through four-level ...
Non-diffracting optical quasi-Bessel beams provide an opportunity to construct optical fields of com...
[en] The focusing properties of a so-called reflaxicon (a combination of a diverging and a convergin...
We propose an optical element: a phase-shifted Fresnel axicon for generation of multiple Bessel beam...
We have developed a high-aspect ratio optical pipeline aiming to produce a highly collimated stream ...
Based on the cross-spectral density matrix, closed form result for propagation equation of electroma...
We derive a general law for the M-2 factor of any beam generated by a partially coherent Schell-mode...
The theory of partial coherence is a field of interest due to its applications in many branches of p...
Lens-axicon doublets have been used to produce Bessel-Gaussian beams, a narrow non-diffracting beam ...