Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of nonlinear birefringent soft-matter affects the propagation of light beams and the features of self-induced waveguides. We address the formation of optical spatial solitons and the control of their trajectories versus temperature, comparing the measurements with the expectations based on a simplified model, showing an excellent agreement. Moreover, in a guest⁻host mixture with an absorbing dye dopant, we study the competition between reorientational and thermal nonlinearities, demonstrating that the two processes can be adjusted independently in order to tune the soliton properties, i.e., trajectory and confinement strength. Our results are an ...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
Nonlinear systems respond to an excitation in a non-proportional way and do not satisfy the superpos...
We study light propagation in nematic liquid crystals in the context of spatial optical solitons for...
Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of n...
Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of n...
Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of n...
We investigate the role of competing nonlinear responses in the formation and propagation of bright ...
We demonstrate thermo-optic control on the propagation of optical spatial solitons in nematic liquid...
We demonstrate thermo-optic control on the propagation of optical spatial solitons in nematic liquid...
We investigate nonlinear optical propagation of continuous-wave (CW) beams in bulk nematic liquid cr...
We investigate nonlinear optical propagation of continuous-wave (CW) beams in bulk nematic liquid cr...
This thesis examines in detail the study of nonlinear wave phenomena arising in different contexts ...
Using modulation theory, we develop a simple [(2+1)-dimensional] model to describe the synergy betwe...
Using modulation theory, we develop a simple [(2+1)-dimensional] model to describe the synergy betwe...
We investigate the propagation of nematicons in various nematic liquid crystals. Following some gene...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
Nonlinear systems respond to an excitation in a non-proportional way and do not satisfy the superpos...
We study light propagation in nematic liquid crystals in the context of spatial optical solitons for...
Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of n...
Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of n...
Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of n...
We investigate the role of competing nonlinear responses in the formation and propagation of bright ...
We demonstrate thermo-optic control on the propagation of optical spatial solitons in nematic liquid...
We demonstrate thermo-optic control on the propagation of optical spatial solitons in nematic liquid...
We investigate nonlinear optical propagation of continuous-wave (CW) beams in bulk nematic liquid cr...
We investigate nonlinear optical propagation of continuous-wave (CW) beams in bulk nematic liquid cr...
This thesis examines in detail the study of nonlinear wave phenomena arising in different contexts ...
Using modulation theory, we develop a simple [(2+1)-dimensional] model to describe the synergy betwe...
Using modulation theory, we develop a simple [(2+1)-dimensional] model to describe the synergy betwe...
We investigate the propagation of nematicons in various nematic liquid crystals. Following some gene...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
Nonlinear systems respond to an excitation in a non-proportional way and do not satisfy the superpos...
We study light propagation in nematic liquid crystals in the context of spatial optical solitons for...