Search results for "Computational physics"

showing 10 items of 725 documents

Technical note: Monte Carlo derivation of TG-43 dosimetric parameters for radiation therapy resources and 3M Cs-137 sources

2005

In clinical brachytherapy dosimetry, a detailed dose rate distribution of the radioactive source in water is needed in order to plan for quality treatment. Two Cs-137 sources are considered in this study; the Radiation Therapy Resources 67-800 source (Radiation Therapy Resources Inc., Valencia, CA) and the 3M model 6500/6D6C source. A complete dosimetric dataset for both sources has been obtained by means of the Monte Carlo GEANT4 code. Dose rate distributions are presented in two different ways; following the TG43 formalism and in a 2D rectangular dose rate table. This 2D dose rate table is helpful for the TPS quality control and is fully consistent with the TG43 dose calculation formalism…

Physicsmedicine.medical_specialtyPhotonbusiness.industrymedicine.medical_treatmentRadioactive sourceBrachytherapyMonte Carlo methodGeneral MedicineComputational physicsRadiation therapymedicineRelative biological effectivenessDosimetryMedical physicsbusinessQuality assuranceMedical Physics
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SU-E-T-237: Monte Carlo Dosimetric Characterization of the Mobetron Mobile Linac

2014

Purpose: The aim of this work is to characterize dosimetrically a clinical intraoperative electron beam accelerator, Mobetron (IntraOp Medical, Inc.) in clinical use in our Hospital. Once this first step is completed our purpose is to evaluate shielding requirements for such a device by preparing adequate phase space files. Methods: It is known that electron beam simulation parameters required for state-of-the-art Monte Carlo codes to obtain a good match with measured data, like the mean energy or the FWHM, may not be code-independent due to the different set of process simulated and formalisms involved. Then, to cross-check our results against any issue in the simulation we have compared e…

Physicsmedicine.medical_specialtyPhysics::Medical PhysicsMonte Carlo methodExperimental dataGeneral MedicineLinear particle acceleratorComputational physicsPhase spaceElectromagnetic shieldingmedicineCathode rayRange (statistics)Medical physicsEnergy (signal processing)Medical Physics
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SU-FF-T-14: Monte Carlo Derivation of TG-43 Dosimetric Parameters for Radiation Therapy Resources and 3M Cs-137 Sources

2005

Purpose: In clinical brachytherapydosimetry a detailed dose rate distribution of the radioactive source in water is needed to make a quality treatment planning. Two Cs‐137 sources are considered in this study the Radiation Therapy Resources 67–800 source(Radiation Therapy Resources Inc., Valencia, CA) and the 3M model 6500/6D6C source.Material and methods: A complete dosimetric dataset for both sources has been obtained by means of the Monte Carlo GEANT4 code. Results:Dose rate distributions are presented in two different ways, following the TG43 formalism and in a 2D rectangular dose rate table. Conclusion: This 2D dose rate table is helpful for the TPS quality control and it is fully cons…

Physicsmedicine.medical_specialtybusiness.industryRadioactive sourcemedicine.medical_treatmentBrachytherapyMonte Carlo methodGeneral MedicineComputational physicsRadiation therapymedicineDosimetryMedical physicsbusinessAnisotropyRadiation treatment planningQuality assuranceMedical Physics
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Technical note: Monte-Carlo dosimetry of the HDR 12i and Plus 192Ir sources.

2001

In this study a complete set of dosimetric data for the GammaMed high dose rate (HDR) 12i and Plus 192 Ir sources are presented. These data have been calculated by means of the Monte Carlo simulation code GEANT3. Absolute dose rate distributions in water are presented as conventional two dimensional (2D) Cartesian look-up tables, and in the TG43 formalism.

Physicsmedicine.medical_treatmentBrachytherapyMonte Carlo methodBrachytherapyBiophysicsWaterTechnical noteGeneral MedicineIridium RadioisotopesBiophysical PhenomenaComputational physicslaw.inventionFormalism (philosophy of mathematics)lawmedicineEconometricsDosimetryAnisotropyCartesian coordinate systemDose rateRadiometryMonte Carlo MethodMedical physics
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Effects of non-uniform interstellar magnetic field on synchrotron X-ray and inverse-Compton γ-ray morphology of supernova remnants

2011

Context. Observations of SuperNova Remnants (SNRs) in X-ray and γ-ray bands promise to contribute important information to our understanding of the kinematics of charged particles and magnetic fields in the vicinity of strong non-relativistic shocks and, therefore, the nature of Galactic cosmic rays. The accurate analysis of SNR images collected in different energy bands requires theoretical modeling of synchrotron and inverse Compton emission from SNRs. Aims. We develop a numerical code (remlight) to synthesize, from MHD simulations, the synchrotron radio, X-ray, and inverse Compton γ-ray emission originating in SNRs expanding in a non-uniform interstellar medium (ISM) and/or non-uniform i…

Physicsshock waveAstrophysics::High Energy Astrophysical Phenomenamedia_common.quotation_subjectGamma rayAstronomy and AstrophysicsCosmic rayAstrophysics::Cosmology and Extragalactic AstrophysicsElectronradiation mechanisms: non-thermalAsymmetrymagnetohydrodynamics (MHD)SynchrotronX-rays: ISMComputational physicsMagnetic fieldlaw.inventionInterstellar mediumgamma rays: ISMSpace and Planetary SciencelawMagnetohydrodynamicsAstrophysics::Galaxy AstrophysicsISM: supernova remnantmedia_common
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Dispersion of pressure at the inner edge of the neutron star crust

2021

This paper presents a method for estimating the pressure variance at the inner edge of a neutron star crust. The obtained results quantify uncertainty in the estimation of pressure at the core-crust interface, implying that they depend on the selected equation of state and the neutron star’s mass distribution function. The quality of the transition pressure determination depends on the neutron star’s mass, with a significant decrease in accuracy for configurations with masses close to 2M . The method used makes it possible to control the theoretical part of the core-crust pressure dispersion in determining the observational quantities.

Physicstransition densityMass distributionEquation of state (cosmology)Astrophysics::High Energy Astrophysical Phenomenadense nuclear matterCrustFunction (mathematics)Edge (geometry)Computational physicsNeutron starQuality (physics)Dispersion (optics)Astrophysics::Earth and Planetary Astrophysicsneutron star
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Partially Implicit Runge-Kutta Methods for Wave-Like Equations

2014

Runge-Kutta methods are used to integrate in time systems of differential equations. Implicit methods are designed to overcome numerical instabilities appearing during the evolution of a system of equations. We will present partially implicit Runge-Kutta methods for a particular structure of equations, generalization of a wave equation; the partially implicit term refers to this structure, where the implicit term appears only in a subset of the system of equations. These methods do not require any inversion of operators and the computational costs are similar to those of explicit Runge-Kutta methods. Partially implicit Runge-Kutta methods are derived up to third-order of convergence. We ana…

Physics::Computational Physics010308 nuclear & particles physicsDifferential equationMathematical analysisInversion (meteorology)010103 numerical & computational mathematicsSystem of linear equationsComputer Science::Numerical Analysis01 natural sciencesMathematics::Numerical AnalysisRunge–Kutta methods0103 physical sciences0101 mathematicsMathematics
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"Table 8" of "Measurement of the low-energy antideuteron inelastic cross section"

2020

Raw primary antiproton-to-proton ratio from Geant4-based MC simulations as a function of the momentum p_primary (exp. data).

Physics::Computational Physics5020.0P PB --> XPhysics::Accelerator PhysicsRAW_PBAR_PNuclear ExperimentRaw antiproton-to-proton ratio
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"Table 2" of "Measurement of the low-energy antideuteron inelastic cross section"

2020

Raw primary antiproton-to-proton ratio from Geant4-based MC simulations as a function of the momentum p_primary.

Physics::Computational Physics5020.0P PB --> XPhysics::Accelerator PhysicsRAW_PBAR_PNuclear ExperimentRaw antiproton-to-proton ratio
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Rational Hermite Interpolation and Quadrature

1993

Rational Hermite interpolation is used in two different ways in order to derive and analyze quadrature rules. One approach yields quadratures of Gaussian-type whereas the other one generalizes Engels’ dual quadratures exhibiting the close connection between rational Hermite interpolation and quadrature in general.

Physics::Computational PhysicsCubic Hermite splineHermite splineChebyshev–Gauss quadratureHermite interpolationMonotone cubic interpolationApplied mathematicsBirkhoff interpolationComputer Science::Numerical AnalysisGauss–Kronrod quadrature formulaMathematics::Numerical AnalysisMathematicsClenshaw–Curtis quadrature
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