0000000000602796

AUTHOR

A. O. Matkovskii

showing 9 related works from this author

Stable and transient color centers in Gd3Ga5O12 crystals

2004

The work is devoted to investigation of stable color centers (CC) that are created in Gd3Ga5O12 (GGG) crystals under irradiation with γ-quanta (E = 1.25 MeV, D = 105 Gy ) as well as transient CC created in the crystals under irradiation with pulsed electron beam (E = 0.25 MeV, pulse duration 10 ns, fluence 1012 cm-2, time interval of registration 0-500 ns). On the basis of the performed study of optical absorption spectra of the as-grown and irradiated crystals it was established the correlation between a defect subsystem of as-grown crystals and a type of CC induced by radiation in the crystals. The role of Ca2+ dopant ions in the processes of CC formation is examined. Models of the stable…

DopantChemistryAnalytical chemistryPulse durationGeneral ChemistryRadiationCondensed Matter PhysicsFluenceIonNuclear magnetic resonanceCathode rayGeneral Materials ScienceIrradiationTransient (oscillation)Crystal Research and Technology
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Radiation displacement defect formation in some complex oxide crystals

2000

The work is devoted to an analysis of the formation processes of radiation displacement defects (RDDs) and color centers (CCs) under irradiation of complex oxide crystals. The results of the displacement process simulation as well as the analysis of the RDDs and CCs accumulation kinetics in some complex oxide crystals are presented. New experimental results on additional absorption spectra induced by neutron irradiation of LiNbO3 (LNO) crystals doped with Fe and Cr and YAlO3 (YAP) crystals doped with Nd and Er as well are presented. Dose dependencies are compared and their peculiarities are discussed. ” 2000 Elsevier Science B.V. All rights reserved.

Nuclear and High Energy PhysicsComplex oxideMaterials scienceAbsorption spectroscopyKineticsLithium niobateDopingRadiationDisplacement (vector)chemistry.chemical_compoundchemistryPhysical chemistryIrradiationInstrumentationNuclear chemistryNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Transient color centers in GGG crystals

2002

Electron pulse induced absorption and their decay kinetics have been investigated in samples of GGG crystals with different starting absorption spectra. It is shown that for all samples there appears a wide transient absorption (TA) band with two maxima in the region 14,000-17,000 v cm m 1 and 22,000-26,000 v cm m 1 . TA decay kinetics measurements in 14,000 v cm m 1 and 22,000 v cm m 1 are two-exponential (with half-time order several tens and several hundreds ns). Analyzing the obtained results, we can suppose that low and high energy TA bands are connected with the F + (or O m ) and F transient color centers (TCC) respectively.

Nuclear and High Energy PhysicsRadiationAbsorption spectroscopyChemistrybusiness.industryKineticsAnalytical chemistryElectronRadiationCondensed Matter PhysicsOpticsElectron pulseUltrafast laser spectroscopyGeneral Materials ScienceTransient (oscillation)businessAbsorption (electromagnetic radiation)Radiation Effects and Defects in Solids
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The role of Fe and Cu dopants in electron–hole trapping and relaxation process in congruent LiNbO3

2003

Abstract The transient optical absorption and kinetics of absorption decay is studied in undoped, Fe doped, and Cu doped LiNbO 3 crystals irradiated by pulsed electron beam. The 1.6 eV band of electron polaron trapped at antisite niobium was observed in all crystal samples. The nature of centers responsible for transient absorption is discussed. Electron polarons are shown to be less stable in LiNbO 3 :Fe compared with LiNbO 3 :Cu and undoped LiNbO 3 . It is suggested that a major part of electrons and holes created by irradiation are trapped in the vicinity of dopants.

Absorption spectroscopyCondensed matter physicsDopantChemistryOrganic ChemistryElectron holeElectronPolaronAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsInorganic ChemistryCrystalElectron beam processingElectrical and Electronic EngineeringPhysical and Theoretical ChemistryAbsorption (electromagnetic radiation)SpectroscopyOptical Materials
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Displacement Defect Formation in Complex Oxide Crystals under Irradiation

2000

The work is devoted to an analysis of formation processes of the radiation displacement defects (RDDs) and colour centres (CCs) in complex oxide crystals under irradiation. The calculation results on: the displacement process simulation as well as an analysis of the RDD and CC accumulation kinetics are presented. New experimental results on additional absorption spectra induced by neutron irradiation of LiNbO(3) (LNO) crystals doped with Fe and Cr and YAlO(3) (YAP) crystals doped with Nd and Er as well are presented. Dose dependencies of the additional absorption are compared and their peculiarities are discussed. The obtained results confirm that CCs causing the irradiation induced absorpt…

RADIATION-STIMULATED PROCESSESDAMAGEMaterials scienceAbsorption spectroscopyYTTRIUM-IRON-GARNETDopingLithium niobateAnalytical chemistryELECTRON-IRRADIATIONAMORPHIZATIONCondensed Matter PhysicsY3FE5O12LINBO3Electronic Optical and Magnetic MaterialsENERGYchemistry.chemical_compoundchemistryImpurityElectron beam processingSINGLE-CRYSTALSIrradiationIONAbsorption (electromagnetic radiation)Perovskite (structure)Nuclear chemistryphysica status solidi (a)
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Radiation effects in Li2B4O7 oxide crystals

2000

Abstract The lithium tetraborate single crystal has been irradiated by neutrons and the optical properties of these crystals are studied. Irradiation induces optical absorption bands at 42 000, 33 000, and 20 000 cm −1 . The intensities of these bands depend on the energy of the neutrons, on the irradiation temperature, and on the presence of an external electric field. An applied electric field induces the displacement of charged particles, creating the micrononhomogeneous regions in the crystal leading to a decrease of the intensities of the absorption bands. It has been established that the irradiation damages not only the surface of the crystal but also the deeper layers.

Nuclear and High Energy PhysicsAbsorption spectroscopyChemistryPhysics::OpticsRadiationMolecular physicsCharged particleCrystalCrystallographyElectric fieldIrradiationAbsorption (electromagnetic radiation)InstrumentationSingle crystal
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Transient color centers in complex oxide crystals

2005

The present work is devoted to investigation of induced by a pulsed electron beam (E = 0.25 MeV, τ = 10 ns) transient color centers in pure Gd3Ga5O12, YAlO3 and LiNbO3 single crystals. The relaxation of induced absorption of the crystals was studied within 0-5000 ns range. The origin and nature of transient color centers responsible for induced absorption was discussed. (© 2005 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)

Range (particle radiation)CrystallographyComplex oxideChemistryCathode rayRelaxation (physics)Transient (oscillation)Absorption (electromagnetic radiation)Molecular physicsphysica status solidi (c)
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Transient and stable color centers in pure and Cu-doped LiNbO3

2003

The present work is devoted to investigation of stable and transient color centers that are induced by radiation and temperature in pure and Cu-doped LiNbO 3 single crystals. The transient changes of absorption of the crystals induced by pulsed electron beam (E=0.25 MeV) are studied in 0-5000 ns time range, as well as stable changes of absorption induced by reducing annealing and irradiation with γ-quanta, high energy electrons or fast reactor neutrons.

Annealing (metallurgy)Chemistrybusiness.industryDopingAnalytical chemistryGeneral ChemistryElectronRadiationCondensed Matter PhysicsFerroelectricityOpticsUltrafast laser spectroscopyCathode rayGeneral Materials ScienceIrradiationbusinessCrystal Research and Technology
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Time-resolved optical absorption in YAlO3 crystals

2004

Abstract The present work is devoted to the investigation of transient absorption (TA) induced by a pulsed electron beam (E=250 keV ) in pure and doped YAlO3 (YAP) single crystals. The nature of centers responsible for TA is discussed.

RadiationMaterials sciencebusiness.industryDopingElectronElectron beam irradiationUltrafast laser spectroscopyCathode rayComputer Science::Programming LanguagesOptoelectronicsIrradiationAtomic physicsbusinessAbsorption (electromagnetic radiation)InstrumentationRadiation Measurements
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