Publication | Open Access
Pyroliton: pyroelectric spatial soliton
90
Citations
24
References
2009
Year
Materials SciencePhotonicsPolariton DynamicEngineeringPhysicsNonlinear OpticsOptical PropertiesNon-linear OpticPhotonic MaterialsApplied PhysicsTopological SolitonOptical TrappingPyroelectric Spatial SolitonLithium Niobate CrystalsPyroelectricityOptoelectronicsSpontaneous PolarisationOptical Beam Self-trapping
The concept of optical beam self-trapping in pyroelectric photorefractive medium is presented. We show that the temperature controlled spontaneous polarisation of ferroelectric crystals produces an optical nonlinearity that can lead to formation of 2-D spatial soliton named pyroliton. Experimental demonstrations performed in lithium niobate crystals illustrate that efficient self-trapping occurs either for ordinary or extraordinary polarisation under moderate temperature increase. For instance, a 15 microm diameter pyroliton can be formed with a 10 degree temperature raise.
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