Search results for "Electro-optics"

showing 5 items of 5 documents

Photorefraction demonstrations using electrooptic PLZT ceramics modulators

2003

PLZT ceramics electrooptic (EO) modulator was designed for demonstrations and student's laboratory works to study photorefraction using Ar+ laser (λ = 514 nm). PLZT element had an aperture of 1.5 x 8 mm2 and thickness of 1.5 mm. Reading of recorded patterns was realized by applying to the element the biasing electric field. The most efficient writing took place for ceramics composition PLZT 8.75/65/35. The total intensity of two writing beams was up to 300 mW, the applied electric field during writing -- up to 20 kV/cm. The diffraction efficiency depended on the applied biasing reading electric field EBR . For the reading He-Ne laser the diffraction efficiency η ≈ 0.48 was obtained at the b…

DiffractionMaterials sciencebusiness.industryHolographyBiasingDielectricDiffraction efficiencyLaserElectro-opticslaw.inventionOpticslawElectric fieldbusinessSPIE Proceedings
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<title>Electro-optical and fluorescence lifetime studies of aminophthalimide probes in liquids</title>

1995

The modified electro-optical absorption and emission methods are described as well as their use for measurements of electrical dipole moments of five aminophthalimides in ground and excited states. It is found that there exists a principal difference between properties of 3- aminophthalimide (3AP) and 4-amino-N-methylphthalimide (4ANMP) in different solvents. The equilibrated dipole moment of 3AP in its excited state is practically independent on the solvent polarity, in comparison with 4ANMP. The possible mechanism of this effect is discussed.© (1995) COPYRIGHT SPIE--The International Society for Optical Engineering. Downloading of the abstract is permitted for personal use only.

DipolePolarizabilityChemistryExcited stateAnalytical chemistryDielectricLuminescenceAbsorption (electromagnetic radiation)Molecular physicsElectro-opticsFluorescenceSPIE Proceedings
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<title>PLZT ceramics as optical phantom for simulation of light scattering in eye segments and other biological tissues</title>

1999

ABSTRACT Coefficients of light absorption ta and scattering for biological tissues lie within a broad range - minimum ones forhealthy eye tissues up to higher values (fe. t a 0.3 cm and i = 40 cm' at 633 nm for muscle tissues ) for other andmainly turbid tissues. The specific feature of the transparent PLZT ceramics (having absorption t a > 0. 1 cm in the visible and in the near infrared spectrum range) is electrically controlled light scattering. The present work reports onexperimental results of the light transport and backscattering for PLZT 9/65/35 (Pb091La009Zr065Ti035O3). We proposePLZT ceramics with fast and continuously controllable light scattering as an optical phantom for photon …

Materials sciencePhotonBackscatterScatteringbusiness.industryPolarizerElectro-opticsImaging phantomLight scatteringlaw.inventionOpticslawOptoelectronicsbusinessAbsorption (electromagnetic radiation)SPIE Proceedings
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Er:YAG laser giant-pulse generation

2002

Three possibilities of mid-infrared Er:YAG lasers Q-switching were investigated: mechanical and two electro-optical ones. The mechanical method of Q-switching was proved by using of a rotating mirror placed inside the resonator; Pockels or Kerr cells were used for the electro-optical Q-switching. The Pockels cell was constructed on the basis of the Brewster angle cut LiNb03 crystal; the Kerr cell used a ceramic PLZT material. In all the three cases the Er:YAG laser resonator was plan parallel and it consisted of the rear copper mirror and output coupler with 50-70% reflectivity. The Er:YAG crystal was pumped by one xenon flashlamp in a single elliptical silver coated cavity. The generated g…

Materials sciencebusiness.industryOutput couplerLaserQ-switchingElectro-opticsPockels effectlaw.inventionResonatorOpticslawOptical cavityOptoelectronicsbusinessEr:YAG laserSPIE Proceedings
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Solvatochromy and electro-optical study of new fluorine-containing chromophores

1998

technology requires tailored functional materials which fulfill the demands for optimal operation parameters, reliability andprocessability. Organic chromophores and polymers which contain covalently bound chromophores are promising materialclasses which can satisfy a broad spectrum of demands on functional materials for photonics, and they are, therefore,favorites for the development of new photonic devices. However, it is almost impossible to satisfy all physico-chemical andtechnological requirements simultaneously with a polymer consisting of only one type of functional unit. The developmentof a series of different building blocks which allow to cover the whole range of physico-chemical …

chemistry.chemical_classificationMaterials sciencebusiness.industryInstitut für Physik und AstronomieNonlinear opticsPolymerElectro-opticsPlanarity testingNonlinear systemchemistryOptoelectronicsPhotonicsFunctional polymersbusinessCurse of dimensionalitySPIE Proceedings
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