Search results for "DAMAGE"

showing 10 items of 1289 documents

Characterisation of radiation damage in silicon photomultipliers with a Monte Carlo model

2008

Measured response functions and low photon yield spectra of silicon photomultipliers (SiPM) were compared to multi-photoelectron pulse-height distributions generated by a Monte Carlo model. Characteristic parameters for SiPM were derived. The devices were irradiated with 14 MeV electrons at the Mainz microtron MAMI. It is shown that the first noticeable damage consists of an increase in the rate of dark pulses and the loss of uniformity in the pixel gains. Higher radiation doses reduced also the photon detection efficiency. The results are especially relevant for applications of SiPM in fibre detectors at high luminosity experiments.

PhysicsNuclear and High Energy PhysicsLuminosity (scattering theory)business.industryPhysics::Instrumentation and DetectorsDetectorMonte Carlo methodFOS: Physical sciencesRadiationOpticsSilicon photomultiplierRadiation damageIrradiationNuclear Experiment (nucl-ex)businessNuclear ExperimentInstrumentationMicrotronNuclear Experiment
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Noise and radiation damage in silicon photomultipliers exposed to electromagnetic and hadronic radiation

2009

For the electron arm tracking system in the KAOS spectrometer at the Mainz Microtron MAMI a detector based on 2 m long scintillating fibres read out by silicon photomultipliers (SiPM) is planned. Because of the detector's close proximity to the intense electron beam a study of noise and radiation damage in SiPM has been performed. A sample of devices was exposed directly to a 14 MeV electron beam and to a mixed radiation field in the experimental area. First noticeable effects are a large increase in the dark count rate and a severe loss of the gain uniformity.

PhysicsNuclear and High Energy PhysicsPhotomultiplierPhysics::Instrumentation and Detectorsbusiness.industryRadiationParticle detectorOpticsSilicon photomultiplierElectron beam processingRadiation damageNuclear ExperimentbusinessInstrumentationMicrotronNoise (radio)Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Neutron yields from thick 12C and 9Be targets irradiated by 50 and 65 MeV deuterons

2001

Abstract Absolute intensities, angular distributions and energy spectra of neutrons emitted from thick 12 C and 9 Be targets irradiated with 50 and 65 MeV deuterons, respectively, have been measured. The neutron spectra were measured by time-of-flight (TOF) technique. The detectors provided continuous coverage from 0° to 60° where a significant angular dependence of emitted neutrons was found. The yield of 0.109(10) neutrons/deuteron from the 9 Be target is a factor of two higher than that from the 12 C target, 0.056(6) neutrons/deuteron. The hardness parameters of the neutron spectra are calculated for the radiation damage studies of the silicon devices.

PhysicsNuclear and High Energy PhysicsSiliconAstrophysics::High Energy Astrophysical PhenomenaNuclear Theorychemistry.chemical_elementSpectral lineNuclear physicschemistryDeuteriumYield (chemistry)Radiation damageNeutronAngular dependenceIrradiationAtomic physicsNuclear ExperimentInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Cryogenic operation of silicon detectors

2000

This paper reports on measurements at cryogenic temperatures of a silicon microstrip detector irradiated with 24 GeV protons to a #uence of 3.5]1014 p/cm2 and of a p}n junction diode detector irradiated to a similar #uence. At temperatures below 130 K a recovery of charge collection e$ciency and resolution is observed. Under reverse bias conditions this recovery degrades in time towards some saturated value. The recovery is interpreted qualitatively as

PhysicsNuclear and High Energy PhysicsSiliconPhysics::Instrumentation and DetectorsPosition resolutionbusiness.industryDetectorchemistry.chemical_elementchemistryReverse biasRadiation damageOptoelectronicsIrradiationbusinessInstrumentationDiode detectorsSilicon microstrip detectorsNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Radiation resistance and optical properties of lead fluoride Cherenkov crystals

1998

Abstract Optical properties of large size lead fluoride (PbF 2 ) crystals of three different manufacturers and their degradation caused by 60 Co γ-radiation have been investigated. Transmission losses have been systematically studied at absorbed energy doses between 0.1 and 7 kGy. Several radiation induced absorption bands have been observed. Optical bleaching with light of wavelengths ≳365 nm has been found very effective to restore the original characteristics even after repeated irradiations. This observation together with the high density and the ultraviolet extended transmission make PbF 2 an excellent choice for high rate and high resolution e.m. calorimetry.

PhysicsNuclear and High Energy Physicsbusiness.industryCalorimetrymedicine.disease_causeWavelengthmedicineRadiation damageDegradation (geology)OptoelectronicsAbsorption (electromagnetic radiation)businessInstrumentationUltravioletCherenkov radiationRadiation resistanceNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Preliminary radiation hardness tests of single photon Si detectors

2010

Single photon Si detectors were fabricated by STMicroelectronics and fully characterized in standard operation conditions and after irradiations. Both single cells and arrays, of dimensions ranging from 5x5 up to 64x64, were electrically tested. The devices operation was studied as a function of the temperature from -25 degrees C to 65 degrees C varying the voltage over breakdown, from 5% up to 20% of the breakdown voltage before and after irradiation using both light ions, 10 MeV B ions to doses in the range 3x10(7)-5x10(10) cm(-2), and X-rays irradiations in the range 0.5-20 krad(Si). Optical characterization was performed using a laser at 659 nm and opportunely chosen filters to vary the…

Physicsbusiness.industryOptical powerSilicon Photomultiplier single photon avalanche diode dark count gain light ion irradiation X-rays irradiationSilicon photomultiplierOpticsSingle-photon avalanche diodeRadiation damageOptoelectronicsBreakdown voltageIrradiationbusinessRadiation hardeningDark current
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Physiological,anatomical and biomass partitioning responses to ozone in the Mediterranean endemic plant Lamottea dianae

2011

Ozone effects on the perennial forb Lamottea dianae were studied in an open-top chamber experiment. Ozone was found to induce reductions in CO 2 assimilation and water use efficiency in the leaves of this species. These reductions were mainly related to a decline in the in vivo CO 2 fixation capacity of Rubisco (V c,max), rather than to stomatal limitations or photoinhibitory damage (F v:F m). In addition to chloroplast degeneration, other observed effects were callose accumulation, formation of pectinaceous wart-like cell wall exudates and phloem alterations. Moreover, ozone exposure significantly reduced root dry biomass. The possible relevance of these adverse effects for Mediterranean f…

Plant water useChlorophyllPhotoinhibitionEndemic plantsRubiscoSouthern EuropeChloroplastsPerennial plantPhysiological processHealth Toxicology and MutagenesisEnvironmental stressAsteraceaeEnvironmental protectionPlant RootsEnvironmental impactchemistry.chemical_compoundAnatomical variationIn vivo studyPhysiological responseBiomassPhotosynthesisBiomass partitioningBIOLOGIA VEGETALfood and beveragesGeneral MedicinePollutionPollenBiomass partitioningAnatomyStomatal conductanceCarbon dioxide fixationBOTANICAStomatal conductanceBiologyPhloemPhotosynthesisArticleAdverse outcomeOzoneLamottea dianaeBiomass allocationBotanyPhotoinhibitionSpecies conservationCalloseRuBisCOPlant damagePublic Health Environmental and Occupational HealthWater use efficiencyPlant exudatePlantNonhumanPlant LeaveschemistryCarbon dioxideOxidative stressSpainbiology.proteinDegenerationPhloemEndemic speciesRisk factorControlled study
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Mouse embryonic stem cells are hypersensitive to apoptosis triggered by the DNA damage O(6)-methylguanine due to high E2F1 regulated mismatch repair.

2007

Exposure of stem cells to genotoxins may lead to embryonic lethality or teratogenic effects. This can be prevented by efficient DNA repair or by eliminating genetically damaged cells. Using undifferentiated mouse embryonic stem (ES) cells as a pluripotent model system, we compared ES cells with differentiated cells, with regard to apoptosis induction by alkylating agents forming the highly mutagenic and killing DNA adduct O(6)-methylguanine. Upon treatment with N-methyl-N'-nitro-N-nitrosoguanidine (MNNG), ES cells undergo apoptosis at much higher frequency than differentiated cells, although they express a high level of the repair protein O(6)-methylguanine-DNA methyltransferase (MGMT). Apo…

Pluripotent Stem CellsMethylnitronitrosoguanidineDNA ComplementaryGuanineDNA damageDNA repairCellular differentiationApoptosisBiologyDNA Mismatch RepairModels BiologicalDNA AdductsMiceO(6)-Methylguanine-DNA MethyltransferaseDNA adductAnimalsMolecular BiologyEmbryonic Stem CellsSwiss 3T3 CellsBase SequenceCell DifferentiationCell BiologyDNA MethylationFibroblastsEmbryonic stem cellMolecular biologyDNA-Binding ProteinsMutS Homolog 2 ProteinDNA methylationDNA mismatch repairStem cellE2F1 Transcription FactorDNA DamageCell death and differentiation
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Brittle failure in polycrystalline RVEs by a grain-scale cohesive boundary element formulation

2013

Polycrystalline materials are commonly employed in engineering structures. For modern applica- tions a deep understanding of materials degradation is of crucial relevance. It is nowadays widely recognized that the macroscopic material properties depend on the microstructure. The polycrystalline microstructure is characterized by the features of the grains and by the phys- ical and chemical properties of the intergranular interfaces, that have a direct influence on the evolution of the microstructural damage. The experimental investigation of failure mechanisms in 3D polycrystals still remains a challenging task. A viable alternative, or complement, to the experiments is Computational Microm…

Polycrystalline materialComputational modellingDamage and crackingSettore ING-IND/04 - Costruzioni E Strutture AerospazialiMicromechanic
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A multiscale approach to polycrystalline materials damage and failure

2015

A two-scale three-dimensional approach for degradation and failure in polycrystalline materials is presented. The method involves the component level and the grain scale. The damageinduced softening at the macroscale is modelled employing an initial stress boundary element approach. The microscopic degradation is explicitly modelled associating Representative Volume Elements (RVEs) to relevant points of the macro continuum and employing a cohesive-frictional 3D grain-boundary formulation to simulate intergranular degradation and failure in the Voronoi morphology. Macro-strains are downscaled as RVEs' periodic boundary conditions, while overall macro-stresses are obtained upscaling the micro…

Polycrystalline materialMultiscale damage modellingBoundary element methodPolycrystalline materials; Multiscale damage modelling; Micromechanics; Boundary element methodSettore ING-IND/04 - Costruzioni E Strutture AerospazialiMicromechanic
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