Ce:YAG (Cerium-doped Yttrium Aluminum Garnet) crystal is a high-performance scintillator material known for its excellent luminescence properties, high radiation resistance, and broad spectral response. Engineered with precise cerium doping, it provides efficient energy conversion, strong mechanical stability, and exceptional optical transparency. This material is widely used in medical imaging, radiation detection, high-energy physics experiments, and display technologies, ensuring reliable performance in advanced optical and detection systems.
Product Overview:
Ce: YAG (Cerium-doped Yttrium Aluminum Garnet) is a material with excellent optical properties, widely used in lasers, detectors, and other high-tech fields. The crystal is based on a YAG (Yttrium Aluminum Garnet) matrix and is doped with Cerium (Ce), which enhances its photoluminescent properties. This makes Ce: YAG particularly effective in high-energy density environments such as laser sources and imaging systems. The crystal exhibits good fluorescence characteristics, high light yield, and rapid decay, making it an essential material in many optical and imaging devices.
Key Features:
- High Light Yield:Cerium doping enhances the photoluminescent efficiency, making it ideal for high-brightness applications.
- Fast Decay Characteristics:Capable of rapidly responding and decaying, suitable for high-frequency imaging systems.
- Excellent Fluorescence:Exhibits distinct emission wavelengths, widely used in laser and imaging technologies.
- Strong Stability:Maintains stable performance under high power and high-energy conditions, suitable for extreme applications.
Applications:
- X-ray Imaging:Used in medical imaging devices like CT scanners to improve image quality and speed.
- Laser Technology:Ce: YAG is used as a laser medium in solid-state lasers, providing efficient light source output.
- Detectors:In scientific research and industrial detectors, Ce: YAG serves as a high-performance optical material for precise photonic conversion.
- Other High-Tech Fields:Applied in aerospace, military, and optical imaging, offering stable optical performance and high efficiency.