The humble X-ray may have received a long-overdue upgrade thanks to the development of a highly sensitive, printable X-ray detector that can operate over a wide range of energy levels. X-rays are high ...
Researchers in Australia have tapped into cutting-edge materials science to produce the world's thinnest X-ray detector, the component that translates energy from radiation into visual or electronic ...
Engineered for high inspection throughput in 24/7 manufacturing cycles Powers premium quality imaging across various inspection platforms Flexible shielding options to withstand continuous high dose ...
A step-change in the field of imaging applications could be on the horizon after Exciton Science researchers demonstrated a route to multi-energy X-ray detection with significantly enhanced ...
Scientists around the world use synchrotrons and X-ray lasers to study some of nature's fastest processes. These machines generate very bright and short X-ray flashes that, like giant strobe lights, ...
Experimental X-ray 2D imaging results showed that the proposed perovskite CMOS detector can achieve very high spatial resolution (5.0 lp mm-1, hardware limit is 6.0 lp mm-1) and low-dose (260 nGy) ...
X-ray polarimetry has emerged as a vital technique for probing high-energy astrophysical phenomena, providing unique insights into the geometry and emission mechanisms of extreme cosmic sources.
Researchers have created the world's thinnest X-ray detector using tin mono-sulfide (SnS) nanosheets. Highly sensitive and with a rapid response time, the new X-ray detector is less than 10 nanometers ...
X-ray imaging is a fast and painless way for doctors to see inside a person. But radiation detectors, which go under the body part being imaged, are rigid panels that contain harmful heavy metals, ...
Researchers from Exciton Science have shown a way to multi-energy X-Ray detection with considerably improved flexibility and sensitivity, suggesting a potential paradigm shift in imaging applications.
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