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Scintillation Crystals

Scintillation Crystals

Our scintillation crystals offer excellent optical performance and are widely used in radiation detection, medical imaging, nuclear industry, and particle physics research. Made from high-purity materials, these crystals efficiently convert radiation energy into detectable light signals, providing accurate measurement and detection capabilities with high sensitivity and stability.

Scintillation Crystals for Radiation Detection

Scintillation crystals are selected for radiation detection, medical imaging research, spectroscopy, security inspection and high-energy physics. Compare crystal composition, dopant, dimensions, optical finish, detector coupling and available performance documentation.

Scintillation Crystal Selection

Specify composition or dopant, crystal size, surface finish, wrapping or housing, optical coupling face, quantity and the detector or radiation measurement application.

Our scintillation crystals offer excellent optical performance and are widely used in radiation detection, medical imaging, nuclear industry, and particle physics research. Made from high-purity materials, these crystals efficiently convert radiation energy into detectable light signals, providing accurate measurement and detection capabilities with high sensitivity and stability.

Scintillation Crystals for Radiation Detection

Scintillation crystals are selected for radiation detection, medical imaging research, spectroscopy, security inspection and high-energy physics. Compare crystal composition, dopant, dimensions, optical finish, detector coupling and available performance documentation.

Scintillation Crystal Selection

Specify composition or dopant, crystal size, surface finish, wrapping or housing, optical coupling face, quantity and the detector or radiation measurement application.

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Scintillation Crystals There are 15 products.

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    Ce:GSO (Cerium-Doped Gadolinium Oxyorthosilicate) Scintillation Crystal offers a well-balanced combination of scintillation properties, including good energy resolution, radiation hardness, and thermal stability up to 150°C. Its decay time can be adjusted by cerium concentration, making it suitable for various detection applications. 

  • Inquiry

    GSOZ (Zirconium-Doped Gadolinium Oxyorthosilicate) Crystal offers enhanced transparency compared to standard GSO crystals. With excellent scintillation properties, good radiation hardness, and stable performance, it is well-suited for medical imaging and high-energy detection applications. 

  • Inquiry

    Ce:GPS (Cerium-Doped Gadolinium Pyrosilicate) Crystal stands out with the highest light yield among oxide scintillators, excellent high-temperature performance up to 300°C, and strong radiation resistance. With no hygroscopicity or self-radiation, it is a reliable choice for medical imaging, security screening, and radiation monitoring.

Showing 13 - 15 of 15 items