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Observation of self-diffraction by gratings in nematic liquid crystals doped with carbon nanotubes
82
Citations
21
References
2001
Year
Transient GratingEngineeringElectron-beam LithographyMicroscopyPhase GratingsNematic Liquid CrystalsOptical PropertiesDiffraction GratingsCrystal FormationCarbon NanotubesMemory EffectNanophotonicsMaterials SciencePhysicsGratingsElectro-optics DeviceNanomaterialsApplied PhysicsInterfacial StudyOptoelectronicsDiffractive Optic
Diffraction gratings were studied in cells of the homogeneously aligned liquid-crystal E7 doped with multiwall carbon nanotubes. These phase gratings were induced by interference modulation of two coherent optical beams, in conjunction with an applied dc field that was perpendicular to the unperturbed director axis. Self-diffraction was observed at all angles of incidence of the writing beams, including normal incidence. A superior nonlinear-index coefficient of 5x10(-2)cm(2)/W was obtained after passage of a 44-mW/cm(2) beam through a film with a grating constant of 18 mum under an external voltage of 15 V. The observed phenomenon depends strongly on the applied dc field, and the memory effect in a nematic film depends strongly on the grating constant.
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