Publication | Open Access
Photo-electromotive-force from volume speckle pattern vibration with large amplitude
11
Citations
15
References
2008
Year
Photorefractive CrystalEngineeringPhysicsMicroscopyOptical PropertiesSpeckle PatternMedicineApplied PhysicsLarge AmplitudeBiophotonicsOptical SpectroscopyAccurate Mathematical ModelPhotophysical PropertyPhotoelasticityBiophysicsNanophotonics
We report an accurate mathematical model describing the photo-electromotive-force signal produced by a speckle pattern of light vibrating in the volume of a photorefractive crystal with a large transverse amplitude. Our model shows that, for vibrations much faster than the material response time, the first harmonic term of the photo-electromotive-force signal exhibits a maximum at a characteristic value of the vibration-amplitude-to-speckle-size ratio that depends on the dark-to-photoconductivity ratio in the material. The theoretical results are in good agreement with experimental data from a vanadium-doped photorefractive CdTe (CdTe:V) crystal under 1064nm wavelength illumination.
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