Publication | Closed Access
Transport Properties of Natural Diamond Used as Nuclear Particle Detector for a Wide Temperatue Range
65
Citations
6
References
1979
Year
EngineeringNuclear PhysicsRadiation Detector MaterialTransport PropertiesTransport PhenomenaInstrumentationMaterials ScienceElectrical EngineeringRadiation DetectionPhysicsNeutron SourceNatural DiamondRadiometryNuclear EngineeringDiamond-like CarbonNatural SciencesSpectroscopyApplied PhysicsDiamond DetectorsDetector PhysicOptoelectronicsNuclear Particle Detector
A thorough investigation has been done about the behavior of natural diamond as a radiation detector material for a wide temperature range. Drift velocities and mean free drift time have been determined at temperatures ranging between 85 K and 700 K and with electric fields up to 60 KV/cm. Average energy required to create an electron-hole pair and energy resolution have been measured in the 100 K - 400 K interval. The spectroscopic features of diamond detectors have also been analyzed on a broad temperature interval. It was found that as T approaches 500 K polarization phenomena begin, thus establishing the upper temperature limit for the detector operation.
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