Search results for "TRACKING"

showing 10 items of 709 documents

“RecPack” a reconstruction toolkit

2004

We present a C++ toolkit to do tracking and vertex reconstruction. The toolkit incorporates common fitting methods, as the Kalman Filter, a framework to define a detector setup, a general navigation and a simple simulation. Furthermore, the toolkit provides a collection of interfaces which facilitates the addition of new fitting methods, trajectory models, geometrical objects, pattern recognition logic, etc. Although the toolkit was originally developed to be used in High Energy Physics, it could be applied to other fields.

PhysicsNuclear and High Energy PhysicsVertex (computer graphics)Fitting methodsSimple (abstract algebra)DetectorPattern recognition (psychology)TrajectoryKalman filterTracking (particle physics)InstrumentationComputational scienceNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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A Compact Solid State Detector for Small Angle Particle Tracking

1999

MIDAS (MIcrostrip Detector Array System) is a compact silicon tracking telescope for charged particles emitted at small angles in intermediate energy photonuclear reactions. It was realized to increase the angular acceptance of the DAPHNE detector and used in an experimental program to check the Gerasimov-Drell-Hearn sum rule at the Mainz electron microtron, MAMI. MIDAS provides a trigger for charged hadrons, p/pi identification and particle tracking in the region 7 deg < theta < 16 deg. In this paper we present the main characteristics of MIDAS and its measured performances.

PhysicsNuclear and High Energy Physicsbusiness.industryPhysics::Instrumentation and DetectorsDetectorHadronNuclear TheoryFOS: Physical sciencesElectronTracking (particle physics)nucl-exCharged particlelaw.inventionTelescopeOpticslawHigh Energy Physics::ExperimentSum rule in quantum mechanicsNuclear Experiment (nucl-ex)businessNuclear ExperimentInstrumentationMicrotronNuclear Experiment
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A portable telescope based on the ALIBAVA system for test beam studies

2013

Abstract A test beam telescope has been built using the ALIBAVA system to drive its data acquisition. The basic telescope planes consist of four XYT stations. Each station is built from a detector board with two strip sensors, mounted one in each side (strips crossing at 90°). The ensemble is coupled to an ALIBAVA daughter board. These stations act as reference frame and allow a precise track reconstruction. The system is triggered by the coincidence signal of the two scintillators located up and down stream. The telescope can hold several devices under tests. Each ALIBAVA daughter board is linked to its corresponding mother board. The system can hold up to 16 mother boards. A master board …

PhysicsNuclear and High Energy Physicsbusiness.industryTrack (disk drive)DetectorTracking (particle physics)SignalParticle detectorlaw.inventionTelescopeData acquisitionlawMeasuring instrumentbusinessInstrumentationComputer hardwareNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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In-beam spectroscopy with intense ion beams: Evidence for a rotational structure in246Fm

2012

The rotational structure of ${}^{246}$Fm has been investigated using in-beam $\ensuremath{\gamma}$-ray spectroscopic techniques. The experiment was performed using the JUROGAMII germanium detector array coupled to the gas-filled recoil ion transport unit (RITU) and the gamma recoil electron alpha tagging (GREAT) focal plane detection system. Nuclei of ${}^{246}$Fm were produced using a 186 MeV beam of ${}^{40}$Ar impinging on a ${}^{208}$Pb target. The JUROGAMII array was fully instrumented with Tracking Numerical Treatment 2 Dubna (TNT2D) digital acquisition cards. The use of digital electronics and a rotating target allowed for unprecedented beam intensities of up to 71 particle-nanoamper…

PhysicsNuclear and High Energy Physicsta114010308 nuclear & particles physics23.20.−g 24.10.Eq 21.10.Re 27.90.+b[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Tracking (particle physics)01 natural sciencesRecoil electronKokeellinen ydinfysiikkaSemiconductor detectorIonRecoilCardinal pointNuclear magnetic resonance0103 physical sciencesNuclear Physics - ExperimentExperimental nuclear physicsAtomic physicsNuclear Experiment010306 general physicsSpectroscopyBeam (structure)Physical Review C
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Challenges for solid state detectors tracking detectors in nuclear physics experiments at FAIR

2007

The compelling scientific goals of future nuclear physics experiments demand significant advances in detector technology. Nuclear physics opportunities at future facility FAIR have never been so bright, but the detector challenges must be met. With the essential questions concerning nuclear structure and dynamics, nuclear astrophysics, limits of nuclear stability, tests of fundamental interactions and symmetries all being realistic targets of studies of exotic nuclei, detector development efforts are strongly motivated. Several examples of developments for future fixed target experiments as well as experiments at storage ring are outlined.

PhysicsNuclear physicsNuclear TheoryDetectorSolid-stateNuclear structureNuclear astrophysicsNuclear ExperimentTracking (particle physics)Fundamental interactionParticle detector2007 IEEE Nuclear Science Symposium Conference Record
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Study ofB±→J/ψπ±andB±→J/ψK±Decays: Measurement of the Ratio of Branching Fractions and Search for DirectCPViolation

2004

Decays that measure the ratio of branching fractions and searches for direct CP violations were analyzed. The decays were collected with the BABAR detector at the PEP-II asymmetric B factory at SLAC. The fitted asymmetries for the small observed differences in the tracking efficiency were corrected between positively and negatively charged track. It was found that the uncertainty in the fixed parameters of the PDFs, determined by fits to stimulated or nonsignal data sets, contributed 0.001 to the systematic errors.

PhysicsParticle physics010308 nuclear & particles physicsBranching fractionElectron–positron annihilationGeneral Physics and AstronomyTracking (particle physics)Branching (polymer chemistry)01 natural sciencesMeasure (mathematics)B-factoryNuclear physicsParticle decay0103 physical sciencesCP violationHigh Energy Physics::Experiment010306 general physicsPhysical Review Letters
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The MuPix high voltage monolithic active pixel sensor for the Mu3e experiment

2015

Mu3e is a novel experiment searching for charged lepton flavor violation in the rare decay μ → eee. In order to reduce background by up to 16 orders of magnitude, decay vertex position, decay time and particle momenta have to be measured precisely. A pixel tracker based on 50 μm thin high voltage monolithic active pixel sensors (HV-MAPS) in a magnetic field will deliver precise vertex and momentum information. Test beam results like an excellent efficiency of >99.5% and a time resolution of better than 16.6 ns obtained with the MuPix HV-MAPS chip developed for the Mu3e pixel tracker are presented.

PhysicsParticle physicsCMOS sensorElectronic detector readout concepts (solid-state)PixelPhysics::Instrumentation and Detectorsbusiness.industryHigh voltageChipElectronic detector readout concepts (solid-state); Particle tracking detectors (solidstate detectors)Magnetic fieldVertex (geometry)OpticsHigh Energy Physics::Experimentddc:610Electric potentialDetectors and Experimental TechniquesParticle tracking detectors (solidstate detectors)ddc:620businessInstrumentationParticle Physics - ExperimentMathematical PhysicsEngineering & allied operationsLepton
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The track finding algorithm of the Belle II vertex detectors

2017

The Belle II experiment is a high energy multi purpose particle detector operated at the asymmetric e + e − - collider SuperKEKB in Tsukuba (Japan). In this work we describe the algorithm performing the pattern recognition for inner tracking detector which consists of two layers of pixel detectors and four layers of double sided silicon strip detectors arranged around the interaction region. The track finding algorithm will be used both during the High Level Trigger on-line track reconstruction and during the off-line full reconstruction. It must provide good efficiency down to momenta as low as 50 MeV/c where material effects are sizeable even in an extremely thin detector as the VXD. In a…

PhysicsParticle physicsPixel010308 nuclear & particles physicsPhysics::Instrumentation and DetectorsTrack (disk drive)PhysicsQC1-999DetectorCharged particle track finding(all)Tracking (particle physics)01 natural sciencesParticle detectorlaw.inventionMomentumlaw0103 physical sciencesddc:530High Energy Physics::Experiment010306 general physicsColliderAlgorithmEnergy (signal processing)EPJ Web of Conferences
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Forward tracking at the nexte+e−collider. Part I. The physics case

2009

n a series of notes we explore the detector requirements of the forward tracking region for a future e(+)e(-) collider with a center-of-mass energy in the range from 500 GeV to 3 TeV. In this first part we investigate the relevance of the forward region for a range of physics processes that are likely to be relevant in such a machine. We find that many examples can be found where excellent performance of the forward detector system may lead to a considerable increase of the physics output of the experiment. A particularly clear physics case can be made for the reconstruction of electrons at small polar angle.

PhysicsParticle physicsSeries (mathematics)DetectorFOS: Physical sciencesElectronTracking (particle physics)High Energy Physics - Experimentlaw.inventionHigh Energy Physics - Experiment (hep-ex)lawParticle tracking detectorsRange (statistics)High Energy Physics::ExperimentSolid state detectorsPolar coordinate systemColliderInstrumentationMathematical PhysicsEnergy (signal processing)Journal of Instrumentation
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New opportunities at the next-generation neutrino experiments I: BSM neutrino physics and dark matter

2020

Abstract The combination of the high intensity proton beam facilities and massive detectors for precision measurements of neutrino oscillation parameters including the charge-parity violating (CPV) phase will open the door to help make beyond the standard model (BSM) physics reachable even in low energy regimes in the accelerator-based experiments. Large-mass detectors with highly precise tracking and energy measurements, excellent timing resolution, and low energy thresholds will enable the searches for BSM phenomena from cosmogenic origin, as well. Therefore, it is also conceivable that BSM topics in the next-generation neutrino experiments could be the dominant physics topics in the fore…

PhysicsParticle physicsSterile neutrinoPhysics beyond the Standard ModelDark matterGeneral Physics and AstronomyScale (descriptive set theory)Tracking (particle physics)01 natural sciences0103 physical sciencesDeep Underground Neutrino ExperimentHigh Energy Physics::ExperimentNeutrino010306 general physicsNeutrino oscillationReports on Progress in Physics
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