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Martin Radtke

Publications and source records attributed to Martin Radtke.

4 recordsLinked to original sources

Experimental investigation of the local environment and lattice distortion in refractory medium entropy alloys

EXAFS analysis of pure elements, binary and ternary equiatomic refractory alloys within the Nb-Zr-Ti-Hf-Ta system is performed at the Nb and Zr K-edges to analyze the evolution of the chemical local environment and the lattice distortion. A good mixing of the elements is found at the atomic scale. For some compounds, a distribution of distances between the central atom and its neighbors suggests a distortion of the structure. Finally, analysis of the Debye-Waller parameters show some correlation with the lattice distortion parameter $\delta ^2$, and allows to quantify experimentally the static disorder in medium entropy alloys.

cond-mat.mtrl-sci

Assessment of toxic metals and hazardous substances in tattoo inks using Sy-XRF, AAS and Raman spectroscopy

A set of tattoo inks from a top brand was analysed by means of Synchrotron-based X-ray Fluorescence spectrometry (Sy-XRF), Atomic Absorption spectrometry (AAS) and Raman Spectroscopy to investigate the presence of toxic metals and hazardous substances. Quantitative analysis shows that Cr, Cu and Pb content is above the maximum allowed levels established by the Council of Europe in the resolution ResAP(2008)1 on requirements and criteria for the safety of tattoos and permanent make-up. Raman analysis reveals the presence of pigments Blue 15, Green 7 and Violet 23 in blue, green and violet inks that belong to a list of prohibited substances mentioned in ResAP(2008)1. Besides, Pigment White 6, carbon black, Pigment Red 8 and a diazo yellow were also identified in white, black, red and yellow inks. The results presented in this study show the importance of regulating tattoo ink composition.

physics.med-ph

Road to micron resolution with a color X-ray camera -- polycapillary optics characterization

In a color X-ray camera, spatial resolution is achieved by means of a polycapillary optic conducting X-ray photons from small regions on a sample to distinct energy dispersive pixels on a CCD matrix. At present, the resolution limit of color X-ray camera systems can go down to several microns and is mainly restricted to pixel dimensions. The recent development of an efficient subpixel resolution algorithm allows a release from pixel size, limiting the resolution only to the quality of the optics. In this work polycapillary properties that influence the spatial resolution are systematized and assessed both theoretically and experimentally. It is demonstrated that with the current technological level reaching one micron resolution is challenging, but possible.

physics.ins-det

Sub-pixel resolution with color X-ray camera SLcam(R)

The color X-ray camera SLcam(R) is a full-field, single photon detector providing scanning free, energy and spatially resolved X-ray imaging. Spatial resolution is achieved with the use of polycapillary optics guiding X-ray photons from small regions on a sample to distinct energy dispersive pixels on a CCD. Applying sub-pixel resolution, signals from individual capillary channels can be distinguished. Accordingly the SLcam(R) spatial resolution can be released from pixel size being confined rather to a diameter of individual polycapillary channels. In this work a new approach to sub-pixel resolution algorithm comprising photon events also from the pixel centers is proposed. The details of the employed numerical method and several sub-pixel resolution examples are presented and discussed.

physics.ins-det