BaF2 – Barium Fluoride
In addition to its use as an UV-Vis-IR optical material, Barium Fluoride’s properties make it ideal for scintillation. BaF2 is utilized widely in high energy physics, nuclear physics and nuclear medical instrumentation.
BGO – Bismuth Germanate
BGO has high atomic number and density values, with detectors using this material being lighter and smaller than others based on alkali halide scintillating material.
CaF2:Eu – Europium Doped Calcium Fluoride
In addition to its use as an UV-Vis-IR optical material, Calcium Fluoride’s properties make it ideal for scintillation when doped with Europium.
Ce:YAG – Cerium Doped YAG Crystal
YAG and YAP material offer well-known and used, durable properties for fast scintillation and chemical resistivity.
Ce:YAP – Cerium Doped YAP Crystal
YAG and YAP material offer well-known and used, durable properties for fast scintillation and chemical resistivity.
CeBr3 – Cerium Bromide
Cerium Bromide single crystals are used in medical imaging, environmental testing and oil logging, detecting x-rays and gamma rays.
CsI(Tl) – Thallium Doped Caesium Iodide
CsI(Tl) scintillation crystal offers benefits over other materials, primarily in the overall size of the detection system.
LYSO – Lutetium Yttrium Orthosilicate
LYSO material offers a high light output with high density and a fast decay time. Its stability and relative resistance to radiation damage make it useful in applications from nuclear physics and medicine and ray detection requiring better timing resolution.
NaI(Tl) – Thallium Doped Sodium Iodide
NaI(Tl) is the most widely used scintillation crystal. Sodium Idoide scintillation crystal has a wide range of applications including environmental measurements, medium energy physics, nuclear medicine and geophysics such as well and oil logging instrumentation.
Scintillation Crystals Introduction
Roditi offer scintillator materials with excellent light output, linearity and stability for detection applications in nuclear medicine, geophysics, environmental measuring and medium energy physics.


