Applied Physics Letters · 1999 · 24 citations · 11 references
EngineeringChemistrySpectrochemical AnalysisSemiconductorsIi-vi SemiconductorElectronic DevicesAnalytical InstrumentationInstrumentationNuclear MedicineElectrical EngineeringRadiation DetectionCdte Radiation DetectorsSpectrometric PerformanceSemiconductor MaterialN-cdte LayerMicroelectronicsP-i-n DesignNatural SciencesSpectroscopyApplied PhysicsMass SpectrometryDetector PhysicAluminum Electrode
CdTe radiation detectors were fabricated using a p-i-n design and a significant improvement in the spectral properties was obtained during room temperature operation. An iodine doped n-CdTe layer was grown on the Te faces of the (111) oriented high resistivity CdTe crystals at the low substrate temperature of 150 °C. An aluminum electrode was evaporated on the n-CdTe side for the n-type contact, while a gold electrode on the opposite side acted as the p-type contact. Very low leakage currents, typically 60 pA/mm2, were attained at room temperature (25 °C) for an applied reverse bias of 250 V. Detectors exhibited excellent spectral responses with an energy resolution of 1.42, 1.7, and 4.2 keV FWHM at 59.5, 122, and 662 keV γ peaks, respectively.
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Molecular beam epitaxy of iodine-doped CdTe and (CdMg) Te
Frank Fischer, A. Waag, G. Bilger et al. · Journal of Crystal Growth · 1994 · 45 citations