Search results for " CdTe detectors"

showing 5 items of 5 documents

Direct Measurement of Mammographic X-Ray Spectra with a Digital CdTe Detection System

2012

In this work we present a detection system, based on a CdTe detector and an innovative digital pulse processing (DPP) system, for high-rate X-ray spectroscopy in mammography (1–30 keV). The DPP system performs a height and shape analysis of the detector pulses, sampled and digitized by a 14-bit, 100 MHz ADC. We show the results of the characterization of the detection system both at low and high photon counting rates by using monoenergetic X-ray sources and a nonclinical X-ray tube. The detection system exhibits excellent performance up to 830 kcps with an energy resolution of 4.5% FWHM at 22.1 keV. Direct measurements of clinical molybdenum X-ray spectra were carried out by using a pinhole…

digital pulse processingmammographyAnalytical chemistrylcsh:Chemical technologyBiochemistryArticleAnalytical ChemistryCdTe detectorsCdTe detectorOpticsmedicineCadmium CompoundsMammographylcsh:TP1-1185Computer SimulationElectrical and Electronic EngineeringInstrumentationPhysicsDosimetermedicine.diagnostic_testbusiness.industryAttenuationSpectrum AnalysisX-RaysDetectorSettore FIS/01 - Fisica Sperimentalehigh photon counting rateCdTe detectors Digital Pulse Processing MammographySignal Processing Computer-AssistedAtomic and Molecular Physics and OpticsPhoton countingSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Full width at half maximumX-ray spectroscopy; high photon counting rate; CdTe detectors; digital pulse processing; mammographyIonization chamberX-ray spectroscopyTelluriumbusinessHalf-value layerSensors; Volume 12; Issue 6; Pages: 8390-8404
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High-rate x-ray spectroscopy in mammography with a CdTe detector: A digital pulse processing approach

2010

Purpose:Direct measurement of mammographic x-ray spectra under clinical conditions is a difficult task due to the high fluence rate of the x-ray beams as well as the limits in the development of high resolution detection systems in a high counting rate environment. In this work we present a detection system, based on a CdTe detector and an innovative digital pulse processing (DPP) system, for high-rate x-ray spectroscopy in mammography. Methods: The DPP system performs a digital pile-up inspection and a digital pulse height analysis of the detector signals, digitized through a 14-bit, 100 MHz digitizer, for x-ray spectroscopy even at high photon counting rates. We investigated on the respon…

x-ray spectroscopy CdTe detectors high photon counting rate digital pulse processing mammography
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Ballistic Deficit Pulse Processing in Cadmium-Zinc-Telluride Pixel Detectors for High-Flux X-ray Measurements.

2022

High-flux X-ray measurements with high-energy resolution and high throughput require the mitigation of pile-up and dead time effects. The reduction of the time width of the shaped pulses is a key approach, taking into account the distortions from the ballistic deficit, non-linearity, and time instabilities. In this work, we will present the performance of cadmium–zinc–telluride (CdZnTe or CZT) pixel detectors equipped with digital shapers faster than the preamplifier peaking times (ballistic deficit pulse processing). The effects on energy resolution, throughput, energy-linearity, time stability, charge sharing, and pile-up are shown. The results highlight the absence of time instabilities …

X-ray and gamma ray detectorsPhysics::Instrumentation and DetectorsX-RaysBiochemistrySettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Atomic and Molecular Physics and OpticsCdTe detectorsAnalytical ChemistryZincElectrical and Electronic EngineeringTelluriumInstrumentationCZT detectors; CdTe detectors; X-ray and gamma ray detectorsCZT detectorsCadmiumSensors (Basel, Switzerland)
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X-ray spectroscopy and dosimetry with a portable CdTe device.

2007

Abstract X-ray spectra and dosimetry information are very important for quality assurance (QA) and quality control (QC) in medical diagnostic X-ray systems. An accurate knowledge of the diagnostic X-ray spectra would improve the patient dose optimization, without compromising image information. In this work, we performed direct diagnostic X-ray spectra measurements with a portable device, based on a CdTe solid-state detector. The portable device is able to directly measure X-ray spectra at high photon fluence rates, as typical of clinical radiography. We investigated on the spectral performances of the system in the mammographic energy range (up to ∼40 keV). Good system response to monoener…

PhysicsX-ray spectroscopy CdTe detectorsNuclear and High Energy Physicsmedicine.medical_specialtyReproducibilitybusiness.industryDetectorExposure HVLFluenceFull width at half maximumQuality (physics)OpticsmedicineDosimetryMedical physicsSpectroscopybusinessInstrumentationHalf-value layer
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Performance enhancements of compound semiconductor radiation detectors using digital pulse processing techniques

2011

Abstract The potential benefits of using compound semiconductors for X-ray and gamma ray spectroscopy are already well known. Radiation detectors based on high atomic number and wide band gap compound semiconductors show high detection efficiency and good spectroscopic performance even at room temperature. Despite these appealing properties, incomplete charge collection is a critical issue. Generally, incomplete charge collection, mainly due to the poor transport properties of the holes, produces energy resolution worsening and the well known hole tailing in the measured spectra. In this work, we present a digital pulse processing (DPP) system for high resolution spectroscopy with compound …

PhysicsNuclear and High Energy PhysicsSpectrometerPreamplifierbusiness.industryDetectorSettore FIS/01 - Fisica SperimentaleCompound semiconductors CdTe detectors X-ray and gamma ray spectroscopy Digital pulse processing Pulse height analysis Pulse shape analysisParticle detectorPulse (physics)OpticsGamma spectroscopySpectroscopybusinessInstrumentationShape analysis (digital geometry)
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