Seeing is believing - but in science, observation often goes beyond the limits of the human eye. X-ray fluorescence spectroscopy (XRF), for example, reveals the hidden colors of chemical elements, changing the way we perceive nature. This versatile tool is widely used in fields ranging from industrial quality control to environmental analysis, and it plays a critical role in disciplines as diverse as geochemistry, forensics, biology, archaeology, and the study of art and cultural heritage.
This book explores advances in X-ray color imaging, which captures images of chemical elements in the X-ray wavelength range, allowing scientists to observe the true complexity of nature. There are two imaging techniques: scanning and projection. While the former is an extension of conventional energy-dispersive XRF technologies, the latter - a breakthrough development - uses 2D semiconductor detectors, enabling real-time "snapshot" and "movie" imaging for the first time. The author delves into the technology and requirements behind this innovation, demonstrating how projection-type X-ray color imaging can now track dynamic systems and chemical reactions in real time, promising transformative applications in various scientific fields.
This book explores advances in X-ray color imaging, which captures images of chemical elements in the X-ray wavelength range, allowing scientists to observe the true complexity of nature. There are two imaging techniques: scanning and projection. While the former is an extension of conventional energy-dispersive XRF technologies, the latter - a breakthrough development - uses 2D semiconductor detectors, enabling real-time "snapshot" and "movie" imaging for the first time. The author delves into the technology and requirements behind this innovation, demonstrating how projection-type X-ray color imaging can now track dynamic systems and chemical reactions in real time, promising transformative applications in various scientific fields.
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