Search results for "Computer Science Applications"

showing 10 items of 3993 documents

The simulation library of the Belle II software system

2017

HistoryPhysics and Astronomy (all)010308 nuclear & particles physicsComputer science0103 physical sciencesMonte Carlo methodSoftware system010306 general physics01 natural sciencesCalculation methodsComputer Science ApplicationsEducationComputational science
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Beam Formation Studies on the CERN IS03b H$^-$ Source

2022

Abstract An H- ion source is being operated at the new 160 MeV linear injector (Linac4) of the CERN accelerator complex. The source’s plasma is of the Radio Frequency Inductively Coupled Plasma type (RF-ICP), without magnetic cusp and runs with Cs-loss compensation [1]. Vertical downward oriented filter- and electron dump-dipolar magnetic fields expand over the plasma chamber, beam-formation, beam-extraction and electron dump regions and generate horizontal asymmetry and beam angular deflection partially compensated by mechanical alignment of the front-end. The H- beam is generated via volume and caesiated plasma surface modes, the latter inducing a radial asymmetry characterized by an incr…

HistoryPhysics::Accelerator PhysicshiukkaskiihdyttimetplasmafysiikkaAccelerators and Storage RingsComputer Science ApplicationsEducation
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Muon multiplicities measured using an underground cosmic-ray array

2016

EMMA (Experiment with Multi-Muon Array) is an underground detector array designed for cosmic-ray composition studies around the knee energy (or similar to 1 - 10 PeV). It operates at the shallow depth in the Pyhasalmi mine, Finland. The array consists of eleven independent detector stations similar to 15 m(2) each. Currently seven stations are connected to the DAQ and the rest will be connected within the next few months. EMMA will determine the multiplicity, the lateral density distribution and the arrival direction of high-energy muons event by event. The preliminary estimates concerning its performance together with an example of measured muon multiplicities are presented.

HistoryPhysics::Instrumentation and Detectorsmuonscosmic-raysCosmic rayEXTENSIVE AIR-SHOWERS01 natural sciencesEducationunderground detectorsNuclear physicsEVENTSData acquisition0103 physical sciencesDetector array010303 astronomy & astrophysicsDETECTORPhysicsMuon010308 nuclear & particles physicsDetectorMultiplicity (mathematics)LEPComputer Science ApplicationsDensity distributionKASCADE-GRANDEHigh Energy Physics::ExperimentEvent (particle physics)EMMA (Experiment with Multi-Muon Array)
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Some topological properties of the Inverse Lens Mapping

2011

Away from critical curves, lens mapping can be seen as a linear invertible transformation of the plane even for regions (cells) of relatively large size. However, close to critical curves the departures from linearity can be very strong. We discuss the topological problems induced by the mapping of regions of the image plane that include critical curves (critical cells).

HistoryPlane (geometry)Mathematical analysisLinearityInverseGeometryImage planeTopologyComputer Science ApplicationsEducationlaw.inventionLens (optics)Transformation (function)Invertible matrixlawComputer Science::DatabasesTopological quantum numberMathematicsJournal of Physics: Conference Series
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Comparison of LIBS and micro-XRF measurements on bronze alloys for monitoring plasma effects

2011

The laser-induced breakdown spectroscopy (LIBS) technique is often used as atomic spectroscopic technique for elemental analysis of materials. However, it presents some drawbacks that make an accurate quantitative analysis difficult. Since the plasma properties, such as spatial inhomogeneity and plume stoichiometry strongly depend on the experimental conditions, the measurements are less reproducible. In order to evaluate the measurement fluctuations, we propose to use the more established micro X-Ray fluorescence (μ-XRF) technique for validating LIBS data. In particular, the quantitative data, obtained by varying the laser fluence, the shot numbers and the temporal acquisition parameters, …

HistoryPlasma features LIBS parameters m-XRF bronze alloys quantitative analysisMaterials sciencebusiness.industryDetectorchemistry.chemical_elementLaserCollimated lightComputer Science ApplicationsEducationlaw.inventionOpticschemistrylawElemental analysisLaser-induced breakdown spectroscopybusinessSpectroscopyTinMonochromator
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An inquiry-based learning path to introduce modern physics in high-school

2018

Although Modern Physics (MP) is a scientific field of increasingly interest, due to its mathematical and conceptual difficulty, it was not generally taught in Italian high-schools. Recently, in order to reduce the gap between school curricula and modern technology, the Ministry of Education promoted the inclusion of MP in Italian secondary schools. MP hot topics produce interest and enthusiasm in learners at all ages, but to address this topic in high school in an effective way it is necessary to translate complex theories and highly-advanced experiments into an understandable language appreciated by students. In this contribution, we discuss an inquiry-driven learning sequence suitable to …

HistoryProcess (engineering)Settore FIS/08 - Didattica E Storia Della Fisicamedia_common.quotation_subjectSettore FIS/03 - Fisica Della MateriaEducationInquiry-based approachModern Physic0504 sociologyLaboratorial activityComputingMilieux_COMPUTERSANDEDUCATIONMathematics educationCooperative workCurriculummedia_commonEnthusiasm05 social sciences050401 social sciences methods050301 educationModern physicsSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Computer Science ApplicationsPath (graph theory)Active learningInquiry-based learningPsychology0503 educationInclusion (education)Journal of Physics: Conference Series
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Study of exotic decay of Cs isotope close to the proton drip line

2020

6 pags., 6 figs. -- 27th International Nuclear Physics Conference (INPC2019) 29 July - 2 August 2019, Glasgow, UK

HistoryProtonGround stateParticle emissionsNuclear TheoryExotic decayProton spectraSpallation reactionsCesium01 natural sciencesLanthanum compounds3100EducationNuclear physicsParticle emissionGermanium compoundsGamma detectors0103 physical sciencesNuclear Physics - ExperimentSpallation010306 general physicsNuclear ExperimentLine (formation)PhysicsLarge Hadron ColliderIsotope010308 nuclear & particles physicsCharged particle arraysCharged particleComputer Science ApplicationsPhysics::Accelerator PhysicsTime distributionFísica nuclearUnbound stateGround stateydinfysiikka
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Group theory aspects of chaotic strings

2014

Chaotic strings are a special type of non-hyperbolic coupled map lattices, exhibiting a rich structure of complex dynamical phenomena with a surprising correspondence to physical contents. Chaotic strings are generated by the Chebyshev maps T2() and T3(). In this paper we connect the Chebyshev maps via the Galois theory to the cyclic groups Z2 and Z3 and give some ideas how this fundamental connection might lead to the emergence of the familiar Lie group structure of particle physics and, finally, even to the emergence of space-time. The Z3-graded cubic and ternary algebras presented here have been introduced by R. Kerner in 1991 and then developed and elaborated in collaboration with many …

HistoryPure mathematicsGalois theoryChaoticStructure (category theory)Lie groupCyclic groupType (model theory)String (physics)Computer Science ApplicationsEducationAlgebraGroup theoryMathematicsJournal of Physics: Conference Series
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Dry deposition models for radionuclides dispersed in air: a new approach for deposition velocity evaluation schema

2017

In the framework of a National Research Program funded by the Italian Minister of Economic Development, the Department of Energy, Information Engineering and Mathematical Models (DEIM) of Palermo University and ENEA Research Centre of Bologna, Italy is performing several research activities to study physical models and mathematical approaches aimed at investigating dry deposition mechanisms of radioactive pollutants. On the basis of such studies, a new approach to evaluate the dry deposition velocity for particles is proposed. Comparisons with literature experimental data show that the proposed dry deposition scheme allows to capture the main phenomena involved in the dry deposition process…

HistoryRadionuclidePhysical model010504 meteorology & atmospheric sciencesMathematical modelbusiness.industryChemistryMechanical engineering01 natural sciences010305 fluids & plasmasComputer Science ApplicationsEducationResearch centreDry deposition pollutant radionuclides deposition velocity0103 physical sciencesProcess engineeringbusinessSettore ING-IND/19 - Impianti Nucleari0105 earth and related environmental sciencesJournal of Physics: Conference Series
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Anomalous behaviour of periodic domain structure in Gd-doped LiNbO3single crystals

2007

Atomic force microscopy studies of etching patterns, stability of regular domain structure, and anomalies of electrical characteristics in the 300 - 385 K range of a series of Gddoped lithium niobate single crystals grown under equal conditions are reported.

HistoryRange (particle radiation)Materials scienceCondensed matter physicsAtomic force microscopyLithium niobateDopingStructure (category theory)Computer Science ApplicationsEducationchemistry.chemical_compoundCrystallographychemistryEtching (microfabrication)Domain (ring theory)Journal of Physics: Conference Series
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