0000000000114662

AUTHOR

Nina Nordman

showing 10 related works from this author

Influence of the age of amorphous nonannealed As2S3 thin films on holographic properties

1998

The dependences of the maximal first order diffraction efficiency and the corresponding specific recording energy on the holographic grating period were studied. Grating period was varied from 0.40 to 70.0 μm. Both fresh and aged films were used. A large holographic recording efficiency decrease in the course of aging is found to take place. These changes are due to the effective film grain size increase caused by the relaxational structural changes and atmospheric oxygen exposure. Results are explained with the aid of stress fields induced by the evaporation and holographic recording. The obtained results can be used to optimize the hologram recording in amorphous chalcogenide films.

Materials scienceHolographic gratingChalcogenidebusiness.industryHolographyGratingDiffraction efficiencyEvaporation (deposition)Atomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionAmorphous solidchemistry.chemical_compoundOpticschemistrylawElectrical and Electronic EngineeringPhysical and Theoretical ChemistryThin filmbusinessOptics Communications
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Model of holographic recording in amorphous chalcogenide films using subband-gap lightat room temperature

1997

The subband-gap light holographic recording in amorphous as-evaporated ${\mathrm{As}}_{2}$${\mathrm{S}}_{3}$ films at room temperature is experimentally studied. Properties are considerably different from those of usual holographic recording based on the band-gap light induced structural changes. The most important characteristic features of this nonpermanent recording include photoinduced refractive index increase, weak photobleaching, the absence of the photoinduced thickness changes, light polarization dependence, large exposures, holographic grating shifts during the exposure and a peculiar two maxima spatial frequency response. The first order diffraction efficiency up to 4.1% is achie…

Materials scienceCondensed matter physicsHolographic gratingbusiness.industryChalcogenideHolographyPhysics::OpticsDiffraction efficiencylaw.inventionAmorphous solidCondensed Matter::Materials Sciencechemistry.chemical_compoundchemistrylawOptoelectronicsbusinessMaximaRefractive indexHolographic recordingPhysical Review B
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<title>Mechanisms of holographic recording in amorphous semiconductor films</title>

1998

The mechanisms of holographic recording in (mainly chalcogenide) amorphous semiconductor films are reviewed including photoinduced structural changes, relaxational structural changes, recharging of localized states in the band gap, and photoinduced anisotropy. The holographic properties in these cases are compared. Different effects of hologram self-enhancement are also considered.© (1998) COPYRIGHT SPIE--The International Society for Optical Engineering. Downloading of the abstract is permitted for personal use only.

DiffractionMaterials sciencebusiness.industryBand gapChalcogenideOptical engineeringHolographylaw.inventionchemistry.chemical_compoundChemical specieschemistrylawOptoelectronicsbusinessAnisotropyRefractive indexOptical Information Science and Technology (OIST97): Optical Recording Mechanisms and Media
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<title>Photoinduced anisotropy and holographic recording in amorphous chalcogenides</title>

2001

The effect of photoinduced anisotropy and its application to vector hologram recording is reviewed focusing on amorphous chalcogenides. Vector holographic grating recording in amorphous As-S-Se(a-As-S-Se) films is experimentally studied and analyzed in comparison with scalar recording. It is holographically established that a linearly polarized 632.8 nm light produces photoinduced anisotropy and the chalcogen related D+, D- center reorientation and generation mechanism is proposed. It is used to explain the observed peculiarities of vector recording in comparison with scalar recording based on photoinduced structural changes: much lower diffraction efficiency (4 X 10-3% versus 4%), much lar…

DiffractionBirefringenceMaterials scienceHolographic gratingCondensed matter physicsLinear polarizationbusiness.industryHolographyDiffraction efficiencyAmorphous solidlaw.inventionOpticslawbusinessAnisotropyOptical Organic and Inorganic Materials
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Effect of structure relaxation on the holographic recording in amorphous As2S3 films

1997

Abstract Results of the experimental studies of holographic recording in a-As 2 S 3 films, such as exposure and intensity dependences, spatial frequency dependence, are reported. Several peculiarities are found including recording intensity threshold, nonmonotonical intensity dependences, nonlinear exposure curves, the change of the spatial frequency response due to film aging. These peculiarities are explained in terms of the phenomenological model which is based on the simultaneous action of the photostructural changes and the relaxational structural changes.

Materials sciencebusiness.industryRelaxation (NMR)Atomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsAmorphous solidNonlinear systemOpticsPhenomenological modelsense organsSpatial frequencyElectrical and Electronic EngineeringPhysical and Theoretical Chemistryskin and connective tissue diseasesbusinessHolographic recordingIntensity (heat transfer)Optics Communications
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On thermal influence of laser beam irradiation on optical absorption of amorphous as-evaporated As2S3 films

1998

Abstract Photoinduced changes of the optical absorption in amorphous as-evaporated As 2 S 3 thin films are studied. Before the measurements films were kept at dark for more than two years. The long storage time ensured that the relaxational structural changes caused by the deposition process were absent. As a light source a CW unfocused 488.0 nm Ar laser line was used. The intensity of the laser beam was varied from rather low intensity values up to intensities which raised the temperature of the films above the glass transition temperature. Based on the behavior of the saturation values of the absorption we were able to state that the exposed As 2 S 3 films started to polymerize at 63–69°C…

Materials scienceAbsorption spectroscopybusiness.industryAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsAmorphous solidLight intensityOpticsIrradiationElectrical and Electronic EngineeringPhysical and Theoretical ChemistryThin filmbusinessGlass transitionAbsorption (electromagnetic radiation)Saturation (magnetic)Optics Communications
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<title>Holographic recording in amorphous semiconductor films</title>

1997

The present state of the real time holographic recording in amorphous semiconductor films is reviewed including mechanisms, parameters, properties and applications. Effects of the coherent, incoherent and relaxational self- enhancement as well as the influence of the film structure relaxation are considered. Quasi-permanent sub-band-gap light holographic recording is reported for the first time. 157

DiffractionAmorphous semiconductorsMaterials sciencebusiness.industryHolographylaw.inventionCondensed Matter::Materials ScienceOpticsModulationlawOptoelectronicsRelaxation (physics)Spatial frequencybusinessHolographic recordingRefractive indexSPIE Proceedings
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Diffraction-efficiency oscillations in amorphous As_2S_3 films

1999

An experimental study of the holographic gratings recorded in nonannealed, thermally with time relaxed amorphous As2S3 films by 514.5-nm light in the presence of 632.8-nm readout light is carried out. The dependences of the maximal first-order diffraction efficiency on the holographic grating period was studied in a wide range of periods, from 0.40 to 70.0 µm. A peculiar oscillatory diffraction-efficiency temporal behavior occurring under certain conditions is reported. The obtained results are discussed in terms of photoinduced structural changes, relaxational structural changes, photoinduced anisotropy, and photoinduced recharging of the localized states in the bandgap. The diffraction-ef…

Materials scienceCondensed matter physicsHolographic gratingbusiness.industryBand gapHolographyStatistical and Nonlinear PhysicsDiffraction efficiencyPolarization (waves)Atomic and Molecular Physics and OpticsAmorphous solidlaw.inventionlawOptoelectronicsbusinessAnisotropyDiffraction gratingJournal of the Optical Society of America B
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<title>Structure-relaxation-induced peculiarities of the holographic recording in amorphous As<formula><inf><roman>2</roma…

1997

The results of the experimental study of holographic recording in a-As2S3 films are reported such as exposure and intensity dependencies, spatial frequency dependence. Several peculiarities are found including recording intensity threshold, nonmonotonical intensity dependencies, nonlinear exposure curves, the change of the spatial frequency response due to films aging. These peculiarities are explained in terms of phenomenological model which is based on the simultaneous action of the photostructural changes and the relaxational structural changes.© (1997) COPYRIGHT SPIE--The International Society for Optical Engineering. Downloading of the abstract is permitted for personal use only.

Materials scienceCondensed matter physicsbusiness.industryOptical engineeringRelaxation (NMR)HolographyAmorphous solidlaw.inventionOpticslawPhenomenological modelSpatial frequencyOptical resolutionbusinessIntensity (heat transfer)SPIE Proceedings
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Two-color holographic-grating formation in amorphous As_2S_3 films

1998

A detailed experimental study of the holographic gratings recorded in nonannealed amorphous As2S3 films by 514.5-nm light in the presence of 632.8-nm readout light is carried out. A strong influence of a continuous 632.8-nm readout is found. The dependences of the maximal first-order diffraction efficiency and the corresponding specific recording energy on the holographic grating period were studied in a wide range of periods from 0.40 to 70.0 μm for 2-yr-old films. The obtained results are discussed in terms of photoinduced structural changes, relaxational structural changes, photoinduced anisotropy, and photoinduced recharging of the localized states in the bandgap. The photoinduced sulph…

Materials scienceHolographic gratingbusiness.industryBand gapHolographyStatistical and Nonlinear PhysicsDiffraction efficiencyAtomic and Molecular Physics and Opticslaw.inventionAmorphous solidLight intensitylawAttenuation coefficientOptoelectronicsbusinessAnisotropyJournal of the Optical Society of America B
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