Search results for "Linear energy transfer"

showing 8 items of 18 documents

Power saturation of ESR signal in ammonium tartrate exposed to 60Co gamma-ray photons, electrons and protons.

2006

Abstract Marrale, M., Brai, M., Triolo, A., Bartolotta, A. and D'Oca, M. C. Power Saturation of ESR Signal in Ammonium Tartrate Exposed to 60Co γ-Ray Photons, Electrons and Protons. Radiat. Res. 166, 802–809 (2006). In this paper we present an investigation of the electron spin resonance (ESR) line shape of ammonium tartrate (AT) dosimeters exposed to radiation with different linear energy transfer (LET). We exposed our dosimeters to γ-ray photons (60Co), 7 MeV and 14 MeV initial energy electrons, and 19.3 MeV initial energy protons. The differences in the power saturation behavior of ESR spectra of AT irradiated with photons, electrons and protons could be correlated to the effective LET o…

PhotonBiophysicsLinear energy transferElectronsElectronRadiationRadiation DosageSensitivity and Specificitylaw.inventionlawRadiology Nuclear Medicine and imagingLinear Energy TransferIrradiationCobalt RadioisotopesElectron paramagnetic resonanceRadiometrySaturation (magnetic)TartratesPhotonsRadiationDosimeterChemistryElectron Spin Resonance SpectroscopyReproducibility of ResultsDose-Response Relationship RadiationAmmonium Tartrate 60Co -Ray Photons Electrons and Protons.Gamma RaysAtomic physicsProtonsAlgorithmsRadiation research
researchProduct

Experimental Linear Energy Transfer of Heavy Ions in Silicon for RADEF Cocktail Species

2009

Experimental linear energy transfer values of heavy ions in silicon are presented with comparison to estimations from different semi empirical codes widely used among the community. This paper completes the experimental LET data for the RADEF cocktail ions in silicon.

PhysicsNuclear and High Energy PhysicsSiliconLinear energy transferchemistry.chemical_elementProbability density functionIonNuclear physicsTime of flightNuclear Energy and EngineeringIon acceleratorschemistryElectrical and Electronic EngineeringAtomic physicsNuclear ExperimentIEEE Transactions on Nuclear Science
researchProduct

The Pion Single-Event Latch-Up Cross Section Enhancement: Mechanisms and Consequences for Accelerator Hardness Assurance

2021

Pions make up a large part of the hadronic environment typical of accelerator mixed fields. Characterizing device cross sections against pions is usually disregarded in favor of tests with protons, whose single-event latch-up (SEL) cross section is, nonetheless, experimentally found to be lower than that of pions for all energies below 250 MeV. While Monte Carlo simulations are capable of reproducing such behavior, the reason for the observed pion cross-section enhancement can only be explained by a deeper analysis of the underlying mechanisms dominating proton–silicon and pion–silicon reactions. The mechanisms dominating the SEL response are found to vary with the energy under consideratio…

PhysicsNuclear reactionNuclear and High Energy PhysicsMesonNuclear TheoryMonte Carlo methodHadronLinear energy transfer02 engineering and technology021001 nanoscience & nanotechnologyAccelerators and Storage Rings01 natural sciences7. Clean energyNuclear physicsCross section (physics)PionNuclear Energy and Engineering0103 physical sciencesNuclear Physics - ExperimentHigh Energy Physics::ExperimentElectrical and Electronic EngineeringNuclear Experiment010306 general physics0210 nano-technologyEvent (particle physics)IEEE Transactions on Nuclear Science
researchProduct

Improvement of the LET sensitivity in ESR dosimetry for -photons and thermal neutrons through gadolinium addition

2007

Abstract We investigated the ESR response of new materials, alanine and ammonium tartrate to which gadolinium was added. The addition of gadolinium enhances sensitivity for Co 60 γ -photons because of its high atomic number ( Z = 64 ) and an enhancement of sensitivity for thermal neutrons because of its high thermal neutron cross section and high linear energy transfer (LET) secondary particles produced after the reaction with neutrons. In particular, in this paper we analyzed the microwave power saturation properties of dosimeters of alanine and ammonium tartrate with or without gadolinium exposed to different LET beams. The power saturation trends of dosimeters exposed to photons and to t…

PhysicsRadiationDosimeterammonium tartrateGadoliniumPhysics::Medical PhysicsRadiochemistrychemistry.chemical_elementLinear energy transferRadiationNeutron temperatureGd2O3-ammonium tartratechemistry.chemical_compoundGd2O3-alaninechemistryLETDosimetryCondensed Matter::Strongly Correlated ElectronsAmmoniumNeutronalanineInstrumentationESRRadiation Measurements
researchProduct

Energy loss measurement of protons in liquid water

2011

The proton stopping power of liquid water was, for the first time, measured in the energy range 4.7-15.2 MeV. The proton energies were determined by the time-of-flight transmission technique with the microchannel plate detectors, which were especially developed for timing applications. The results are compared to the literature values (from ICRU Report 49 (1993) and Janni's tabulation (1982 At. Data Nucl. Data Tables 27 147-339)) which are based on Bethe's formula and an agreement is found within the experimental uncertainty of 4.6%. Thus, earlier reported discrepancy between the experimental and literature stopping power values at lower energies was not observed at the energies considered …

PhysicsRange (particle radiation)Energy lossTime FactorsRadiological and Ultrasound TechnologyProtonLiquid waterDetectorWaterNuclear physicsExperimental uncertainty analysisSolventsStopping power (particle radiation)Computer SimulationLinear Energy TransferRadiology Nuclear Medicine and imagingMicrochannel plate detectorProtonsAtomic physicsRadiometryPhysics in Medicine and Biology
researchProduct

Radiation quality discrimination by continuous and pulse ESR techniques

2008

The biological damages produced by ionizing radiations in tissues and cells depend on the radiation quality, besides on the dose. The discrimination of the radiation quality, which is related to the linear energy transfer (LET), interests various fields such as radiobiology, astronautic space research, radiotherapy research and accidental dosimetry. In this work we have applied continuous wave ESR (cw-ESR) and pulse ESR techniques to ammonium tartrate samples with the aim of developing procedures able to discriminate radiation quality whose knowledge is fundamental for rabiobiological considerations. We have chosen the ammonium tartrate because it is a promising compound for the measurement…

PhysicsRange (particle radiation)PhotonDosimeterRenewable Energy Sustainability and the EnvironmentHealth Toxicology and MutagenesisPublic Health Environmental and Occupational HealthLinear energy transferElectronRadiationIonizing radiationNuclear magnetic resonanceNuclear Energy and EngineeringDosimetryAtomic physicsSafety Risk Reliability and QualityWaste Management and Disposal
researchProduct

Discrimination of Radiation Quality Through Second Harmonic Out-of-Phase cw-ESR Detection

2014

The ability to discriminate the quality of ionizing radiation is important because the biological effects produced in tissue strongly depends on both absorbed dose and linear energy transfer (LET) of ionizing particles. Here we present an experimental electron spin resonance (ESR) analysis aimed at discriminating the effective LETs of various radiation beams (e.g., 19.3 MeV protons, 60Co photons and thermal neutrons). The measurement of the intensities of the continuous wave spectrometer signal channel first harmonic in-phase and the second harmonic out-of-phase components are used to distinguish the radiation quality. A computational analysis, was carried out to evaluate the dependence of …

Quality ControlTime FactorsPhotonTime FactorBiophysicsLinear energy transferRadiationIonizing radiationQuality (physics)OpticsRadiation IonizingLinear Energy TransferRadiology Nuclear Medicine and imagingMicrowavesRadiationChemistrybusiness.industryElectron Spin Resonance SpectroscopySettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)EPR spectroscopy; radiation effectsBiophysicAbsorbed doseradiation effectsHarmonicContinuous waveAtomic physicsbusinessMicrowaveEPR spectroscopyRadiation Research
researchProduct

Single- and Double-Strand Breaks of Dry DNA Exposed to Protons at Bragg-Peak Energies

2017

International audience; Ultrathin layers (<20 nm) of pBR322 plasmid DNA were deposited onto 2.5 μm thick polyester films and exposed to proton Bragg-peak energies (90–3000 keV) at various fluences. A quantitative analysis of radio-induced DNA damage is reported here in terms of single- and double-strand breaks (SSB and DSB, respectively). The corresponding yields as well as G-values and the cross sections exhibit fairly good agreement with the rare available data, stemming from close experimental conditions, namely, based on α particle irradiation. SSB/DSB rates appear to be linear when plotted against linear energy transfer (LET) in the whole energy range studied. All the data present a ma…

cross-sectionProtonPolyestersLinear energy transferBragg peak7. Clean energyclustered DNA damage030218 nuclear medicine & medical imagingdamage yield03 medical and health scienceschemistry.chemical_compound0302 clinical medicineFragmentation (mass spectrometry)Materials ChemistryDNA Breaks Double-StrandedLinear Energy TransferDNA Breaks Single-StrandedIrradiationPhysical and Theoretical Chemistryradiochemical yieldDouble strandRange (particle radiation)DNASurfaces Coatings and Films[ PHYS.PHYS.PHYS-CHEM-PH ] Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]chemistry030220 oncology & carcinogenesis[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]ProtonsAtomic physicsDNAPlasmidsBragg-Peaksingle and double strand breakThe Journal of Physical Chemistry B
researchProduct