Development of a coherent X-ray
multispectral microscopy system
project code: T1EDK-04549
HELLENIC MEDITERRANEAN UNIVERSITY (HMU)
TECHNICAL UNIVERSITY of CRETE (TUC)
IKNOWHOW SA (IKH)
Project XMMaS: aims to the development of a system for multispectral microscopy in the region of “soft” X-rays, based on the research achievements of:
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Institute of Plasma Physics & Lasers of the Hellenic Mediterranean University Research Center (IPPL-HMU), on the generation and characterization of ultrafast laser-generated high harmonics
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IKnowHow (IKH), on the technical expertise of the company on the design, development and implementation of automated industrial systems
The rapid growth of nanotechnology has increased the need for fast nanoscale imaging. X-ray Free Electron Laser (XFEL) facilities currently provide such coherent sources of directional and high brilliance x-ray radiation. These facilities require large financial investments for development, maintenance and manpower and thus only a few exist worldwide. XMMaS aims to the development of a table-top prototype system of ultrafast soft X-ray multispectral microscopy imaging for nanostructured materials with enormous potential and a broad range of applications in up-to date technologies. The special characteristics of the extreme-UV source (XUV) provide a very high added value to the final prototype system and cover imaging aspects unachievable by the existing conventional coherent light sources.
Laboratory prototype features:
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Stable and characterized XUV ultrafast coherent light source
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Filtering of appropriate XUV spectrum
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Demonstration of coherent, multispectral diffraction X-ray imaging (CDI) with spatial resolution of 100 nanometers and temporal resolution of femtoseconds
Industrial prototype advantages (Blueprints):
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An industrial product with high added value, extroverted economic and commercial character
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A High-Tech system that meets the technological needs of diagnosis & imaging in the nanoscale
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Applied science and technology competitive to experimental XFEL imaging facilities since:
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expensive synchronous or free electron laser systems are NOT demanded
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the produced compact X-ray source is of broad bandwidth, stable and ultrafast
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soft X-ray ultrafast multispectral nano-imaging will be demonstrated
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