KnowraRadiation damageLinked fromLinked fromThe 13 pages that link to Radiation damage, each with the reason it gives.All 13Related 13Electron microscopyRelated: Electron irradiation can alter or destroy the very structures being imaged.ZirconRelated: Uranium and thorium decay can damage zircon and affect its resistance to alteration.Point defectRelated: Energetic particles displace atoms and generate vacancies and interstitials.Cryo-electron microscopyRelated: Electron exposure damages specimens, forcing a tradeoff between signal and preservation.Absorbed doseRelated: Absorbed dose helps quantify the energy input associated with material changes.Frenkel defectRelated: Energetic collisions can displace atoms from lattice sites and generate vacancy–interstitial pairs.ThermochronologyRelated: Damage can alter helium diffusion, complicating the relationship between mineral age and temperature.Fluorite structureRelated: Fluorite oxides are studied for how their lattices respond to radiation and retain fission products.Interstitial defectRelated: Radiation can create interstitial atoms alongside vacancies and drive their evolution.X-ray detectorRelated: Accumulated exposure can alter detector sensitivity, noise, and calibration.Neutron radiationRelated: Neutron collisions can displace atoms and degrade materials used near intense sources.Crystallographic defectRelated: Displaced atoms create vacancies and interstitials within crystal lattices.AntozoniteRelated: Radioactive impurities in antozonite can create defects that trap reactive species.