We investigate, both theoretically and experimentally, self-trapping of light beams in nematic liquid crystals arranged so as to exhibit the optical Fréedericksz transition in planar cells. The resulting threshold in the nonlinear reorientational response supports a bistable behavior between diffracting and self-localized beam states, leading to the appearance of a hysteretic loop versus input excitation. Our results confirm the role of nematic liquid crystals in the study of non-perturbative nonlinear photonics
We study light localization in nonlinear non-local nematic liquid crystals capable of optical gain. ...
We investigate the propagation of nematicons in various nematic liquid crystals. Following some gene...
Nematicons are self-trapped light beams in nematic liquid crystalline systems. Thanks to their optic...
We investigate, both theoretically and experimentally, self-trapping of light beams in nematic liqui...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
We investigated bistability with light beams in reorientational nematic liquid crystals. For a range...
Light-controlling-light is one of the most advanced paradigms in optical signal processing, includin...
Light-controlling-light is one of the most advanced paradigms in optical signal processing, includin...
Light-controlling-light is one of the most advanced paradigms in optical signal processing, includin...
We analyze the propagation of self-trapped optical beams close to the Fréedericksz threshold in nema...
We investigate light self-trapping and nematicon generation in reorientional nematic liquid crystals...
We investigate light self-trapping and nematicon generation in reorientional nematic liquid crystals...
We report on voltage controlled bistability of optical beams propagating in a nonlocal reorientation...
We report on voltage controlled bistability of optical beams propagating in a nonlocal reorientation...
We study light localization in nonlinear non-local nematic liquid crystals capable of optical gain. ...
We study light localization in nonlinear non-local nematic liquid crystals capable of optical gain. ...
We investigate the propagation of nematicons in various nematic liquid crystals. Following some gene...
Nematicons are self-trapped light beams in nematic liquid crystalline systems. Thanks to their optic...
We investigate, both theoretically and experimentally, self-trapping of light beams in nematic liqui...
Liquid crystals (LC) are excellent media for the exploration of nonlinear phenomena, particularly du...
We investigated bistability with light beams in reorientational nematic liquid crystals. For a range...
Light-controlling-light is one of the most advanced paradigms in optical signal processing, includin...
Light-controlling-light is one of the most advanced paradigms in optical signal processing, includin...
Light-controlling-light is one of the most advanced paradigms in optical signal processing, includin...
We analyze the propagation of self-trapped optical beams close to the Fréedericksz threshold in nema...
We investigate light self-trapping and nematicon generation in reorientional nematic liquid crystals...
We investigate light self-trapping and nematicon generation in reorientional nematic liquid crystals...
We report on voltage controlled bistability of optical beams propagating in a nonlocal reorientation...
We report on voltage controlled bistability of optical beams propagating in a nonlocal reorientation...
We study light localization in nonlinear non-local nematic liquid crystals capable of optical gain. ...
We study light localization in nonlinear non-local nematic liquid crystals capable of optical gain. ...
We investigate the propagation of nematicons in various nematic liquid crystals. Following some gene...
Nematicons are self-trapped light beams in nematic liquid crystalline systems. Thanks to their optic...