Using a variational approach, we obtain the self-focusing critical power for a single and for any number of interacting Laguerre-Gauss beams propagating in a Kerr nonlinear optical medium. As is known, the critical power for freely propagating higher-order modes is always greater than that of the fundamental Gaussian mode. Here, we generalize that result for an arbitrary incoherent superposition of Laguerre-Gauss beams, adding interactions between them. This leads to a vast and rich spectrum of self-focusing phenomena, which is absent in the single-beam case. Specifically, we find that interactions between different modes may increase or decrease the required critical power relative to the sum of individual powers. In particular, high-orbit...
We generate and dynamically control one-, two- and three-dimensional optically bound structures of s...
We demonstrate optical interactions between stable self-trapped optical beams in soft-matter systems...
Some features of the blow up and collapse phenomena characteristic of the focusing nonlinear Schrodi...
The nonlinear dynamical property of Lorentz-Gaussian beams in Kerr media is investigated analyticall...
We propose to combine multiple laser beams into a single diffraction-limited beam by the beam self-f...
[[abstract]]We present a systematic analysis of the self-focusing effects for an intense equal phase...
Abstract. The formation of singularities of self-focusing solutions of the nonlinear Schrödinger equ...
Using the source-dependent expansion method and the paraxial approximation, the evolution of the vec...
We investigate three-dimensional propagation in bulk Kerr media of beams possessing different widths...
We present simulations of the self-focusing effect in nonlinear media for cw and pulsed input. Altho...
We present self-accelerating self-trapped beams in nonlinear optical media, exhibiting self-focusing...
794-797Using variational approach with elliptic Gaussian laser beam as trial function, the combined...
We analyze the method of moving focus to determine the critical power for self-focusing by means of ...
Highly focused beams are applicable in many areas, such as optical particle trapping, particle accel...
Nonlinear focusing of an intense laser beam propagating in a plasma channel is studied by means of t...
We generate and dynamically control one-, two- and three-dimensional optically bound structures of s...
We demonstrate optical interactions between stable self-trapped optical beams in soft-matter systems...
Some features of the blow up and collapse phenomena characteristic of the focusing nonlinear Schrodi...
The nonlinear dynamical property of Lorentz-Gaussian beams in Kerr media is investigated analyticall...
We propose to combine multiple laser beams into a single diffraction-limited beam by the beam self-f...
[[abstract]]We present a systematic analysis of the self-focusing effects for an intense equal phase...
Abstract. The formation of singularities of self-focusing solutions of the nonlinear Schrödinger equ...
Using the source-dependent expansion method and the paraxial approximation, the evolution of the vec...
We investigate three-dimensional propagation in bulk Kerr media of beams possessing different widths...
We present simulations of the self-focusing effect in nonlinear media for cw and pulsed input. Altho...
We present self-accelerating self-trapped beams in nonlinear optical media, exhibiting self-focusing...
794-797Using variational approach with elliptic Gaussian laser beam as trial function, the combined...
We analyze the method of moving focus to determine the critical power for self-focusing by means of ...
Highly focused beams are applicable in many areas, such as optical particle trapping, particle accel...
Nonlinear focusing of an intense laser beam propagating in a plasma channel is studied by means of t...
We generate and dynamically control one-, two- and three-dimensional optically bound structures of s...
We demonstrate optical interactions between stable self-trapped optical beams in soft-matter systems...
Some features of the blow up and collapse phenomena characteristic of the focusing nonlinear Schrodi...