Search results for "Optical storage"

showing 10 items of 13 documents

Optical-data storage-readout technique based on fractal encrypting masks

2009

We propose the use of fractal structured diffractive masks as keys in secure storage-readout systems. A joint transform correlator based on a photorefractive crystal in the Fourier domain is implemented to perform encryption and decryption. We discuss the advantages of encrypting information using this kind of deterministic keys in comparison to conventional random phase masks. Preliminary experimental results are presented to demonstrate the effectiveness of the proposed system.

3D optical data storageComputer sciencebusiness.industryOptical storageDiffraction efficiencyEncryptionAtomic and Molecular Physics and OpticsFractalOpticsEncoding (memory)Computer data storagebusinessJoint (audio engineering)Computer Science::Cryptography and SecurityOptics Letters
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Structure of amorphousGe8Sb2Te11:GeTe-Sb2Te3alloys and optical storage

2009

The amorphous structure of ${\text{Ge}}_{8}{\text{Sb}}_{2}{\text{Te}}_{11}$, an alloy used in the Blu-ray Disc, the de facto successor to digital versatile disk (DVD) optical storage, has been characterized by large-scale (630 atoms, 0.4 ns) density-functional/molecular-dynamics simulations using the new PBEsol approximation for the exchange-correlation energy functional. The geometry and electronic structure agree well with available x-ray diffraction data and photoelectron measurements. The total coordination numbers are Ge: 4.0, Sb: 3.7, and Te: 2.9, and the Ge-Ge partial coordination number is 0.7. Most atoms (particularly Sb) prefer octahedral coordination but 42% of Ge atoms are ``tet…

DiffractionMaterials scienceCoordination numberAlloyNanotechnologyElectronic structureOptical storageengineering.materialCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsAmorphous solidCrystallographyOctahedronengineeringDensity functional theoryPhysical Review B
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Highly selective chemical sensing in a luminescent nanoporous magnet.

2012

Among the wide variety of properties of interest that a given material can exhibit, luminescence is attracting an increasing attention due to its potential application in optical devices for lighting equipment and optical storage, [ 1a − c] optical switching, [ 1d ,e] and sensing. [ 1f − i ] At this respect, many scientists, working in the multidisciplinary fi eld of the materials science, have directed their efforts to the obtention of luminescent materials with potential sensing applications. For instance, sensitive and selective detection of gas and vapor phase analytes can result specially interesting because of the variety of applications that can be found in many different fi elds. A …

FabricationMaterials scienceNanotechnologyOptical storagePhotochemistryOptical switchNanoporesMolecular recognitionGeneral Materials ScienceManganesebusiness.industryNanoporousMechanical EngineeringMolecular electronicsCarbon DioxideSpectrometry FluorescenceMechanics of MaterialsMagnetsSolventsQuantum TheoryMetal-organic frameworkAdsorptionGasesPhotonicsbusinessMethaneCopperAdvanced materials (Deerfield Beach, Fla.)
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Reduction of the spherical aberration effect in high-numerical-aperture optical scanning instruments.

2006

In modern high-numerical-aperture (NA) optical scanning instruments, such as scanning microscopes, optical data storage systems, or laser trapping technology, the beam emerging from the high-NA objective focuses deeply through an interface between two media of different refractive index. Such a refractive index mismatch introduces an important amount of spherical aberration, which increases dynamically when scanning at increasing depths. This effect strongly degrades the instrument performance. Although in the past few years many different techniques have been reported to reduce the spherical aberration effect, no optimum solution has been found. Here we concentrate on a technique whose mai…

Materials scienceContrast transfer functionAperturebusiness.industryAstrophysics::Instrumentation and Methods for AstrophysicsComa (optics)Optical storageAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsNumerical apertureSpherical aberrationOpticsComputer Vision and Pattern RecognitionbusinessAdaptive opticsOptical aberrationJournal of the Optical Society of America. A, Optics, image science, and vision
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Thin Film Metal Oxides for Displays and Other Optoelectronic Applications

2020

Thin films of metal oxides have been extensively studied for various applications because of their durability, lower cost and lower toxicity, excellent chemical, magnetic, electrical and optical properties. A fusion of electrical and optical properties led to the growth of optoelectronic devices for a variety of applications including displays, light-emitting diodes, photovoltaic cells, photodetectors, optical storage, medicine, and so on. Optoelectronic devices have revolutionized our daily lives with their potentials in various aspects. An extensive research on materials for these devices has to be credited for the improvement in their performance over the years. Several metal oxide thin …

Materials scienceFabricationbusiness.industryOxideOptical storagelaw.inventionchemistry.chemical_compoundchemistryThin-film transistorFlexible displaylawOptoelectronicsThin filmbusinessDiodeLight-emitting diode
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Ternary and quaternary Ge-S-Se-Sb-Te amorphous chalcogenide thin films for mid-infrared applications

2017

International audience; Chalcogenide materials exhibit a unique portfolio of properties which has led to their wide use for nonvolatile memory applications such as optical storage (CD-RW and DVD-RAM), Conductive Bridging Random Access Memory or Phase Change Random Access Memory (PCRAM). More recently, thanks to huge electronic nonlinearities under electrical field application, chalcogenide glasses are considered as most promising materials to be used as Ovonic Threshold Switching (OTS) selectors [1]. Besides, thanks to high transparency window in the infrared range and large optical nonlinearities [2], chalcogenide alloys offer the opportunity of development of innovative mid-infrared (MIR)…

Materials scienceOptical fiberNonlinear optics[SPI.OPTI] Engineering Sciences [physics]/Optics / PhotonicChalcogenideOptical films[SPI.NANO] Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics02 engineering and technologyOptical storage[SPI.MAT] Engineering Sciences [physics]/Materials01 natural scienceslaw.invention[SPI.MAT]Engineering Sciences [physics]/Materials010309 opticschemistry.chemical_compoundOpticslaw0103 physical sciencesOptical fibersThin film[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsComputingMilieux_MISCELLANEOUSbusiness.industryNonlinear optics021001 nanoscience & nanotechnology3. Good healthAmorphous solidSupercontinuumNon-volatile memorychemistryOptical variables controlOptical sensors[SPI.OPTI]Engineering Sciences [physics]/Optics / PhotonicOptoelectronicsOptical refraction0210 nano-technologybusiness
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Spatially resolved optical studies of F-center diffusion in KBr crystals.

1996

Spatially resolved optical studies of F-center diffusion during and after the photothermal F\ensuremath{\rightarrow}X color center conversion have been performed by optical scanning and holographic methods in electrolytically colored KBr crystals. Average velocities and diffusion coefficients of F centers have been determined for Gaussian and periodical spatial exposing light intensity distributions. A strong influence of the light intensity gradient has been found on F-center diffusion. It manifests itself by a rapid increase of the effective diffusion coefficient when the light intensity gradient is decreased. This behavior allowed us to explain the observed peculiarities of the holograph…

Materials sciencebusiness.industryGaussianSpatially resolvedHolographyCenter (category theory)Physics::OpticsOptical storagelaw.inventionsymbols.namesakeLight intensityOpticslawsymbolsEffective diffusion coefficientDiffusion (business)Atomic physicsbusinessPhysical review. B, Condensed matter
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Optical storage in doped microstructures of alkali halides

2002

Peculiarities of colour centres production and their recombination in photostimulated processes in doped alkali halide microstructures were examined in connection with their practical use as active photostimulable media in miniaturised optoelectronic and photonic devices. The specific interaction of unrelaxed H-centres and electrons with the dopants in different valence and electronic states open a way for widening the scope of multifunctional (logical and mathematical) optical data processing and transfer.

Nuclear and High Energy PhysicsRadiationValence (chemistry)Materials sciencePhotoluminescenceDopantPhotostimulated luminescencebusiness.industryDopingHalideOptical storageCondensed Matter PhysicsOpticsOptoelectronicsGeneral Materials SciencePhotonicsbusinessRadiation Effects and Defects in Solids
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Optimized factor of merit of the magneto-optical Kerr effect of ferromagnetic thin films

2000

This paper deals with the optimization of the factor of merit of the magneto-optical Kerr effect of a resonant multilayer cavity including a ferromagnetic film. This optimization is of interest in the context of optical storage technology. Using numerical simulations based on the Green's dyadic technique, we discuss a route to obtain magneto-optical multilayers with a vanishing ellipticity and factors of merit (with respect to the bulk magnetic material) larger than 3 on a broad range of wavelengths, significantly higher than the actual state of the art.

PhysicsKerr effectbusiness.industryPhysics::OpticsContext (language use)Optical storageCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsOpticsMagneto-optic Kerr effectFerromagnetismMagnetOptoelectronicsFigure of meritThin filmbusinessThe European Physical Journal B
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All-Optical Storage of Phase-Sensitive Quantum States of Light.

2019

We experimentally demonstrate storage and on-demand release of phase-sensitive, photon-number superposition states of the form $\alpha |0\rangle + \beta e^{i\theta} |1\rangle$ for an optical quantized oscillator mode. For this purpose, we introduce a phase-probing mechanism to a storage system composed of two concatenated optical cavities, which was previously employed for storage of phase-insensitive single-photon states [Phys. Rev. X 3, 041028 (2013)]. This is the first demonstration of all-optically storing highly nonclassical and phase-sensitive quantum states of light. The strong nonclassicality of the states after storage becomes manifest as a negative region in the corresponding Wign…

PhysicsQuantum Physicsbusiness.industryPhase (waves)FOS: Physical sciencesGeneral Physics and AstronomyOptical storage01 natural sciencesSuperposition principleQuantum statePhase spaceQuantum mechanicsQubit0103 physical sciencesComputer data storageWigner distribution functionQuantum Physics (quant-ph)010306 general physicsbusinessPhysical review letters
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