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02519nam a22005175i 4500 |
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978-3-319-28646-4 |
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20160115021534.0 |
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160113s2016 gw | s |||| 0|eng d |
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|a 9783319286464
|9 978-3-319-28646-4
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|a 10.1007/978-3-319-28646-4
|2 doi
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|d GrThAP
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|a QC450-467
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|a 621.36
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|a Ross, Manuel.
|e author.
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|a Atomic Diffusion in Glasses Studied with Coherent X-Rays
|h [electronic resource] /
|c by Manuel Ross.
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|a 1st ed. 2016.
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|a Cham :
|b Springer International Publishing :
|b Imprint: Springer,
|c 2016.
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|a XVIII, 111 p. 67 illus., 22 illus. in color.
|b online resource.
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|a text
|b txt
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|a computer
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|a online resource
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|a text file
|b PDF
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|a Springer Theses, Recognizing Outstanding Ph.D. Research,
|x 2190-5053
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|a Introduction -- Theory -- Experimental -- Data Analysis -- Proof of Concept: Direct Observation of Atomic Diffusion in Glasses -- Practical Application: Tailoring Fast Ionic Diffusion -- Conclusion.
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|a This thesis provides the first successful study of jump diffusion processes in glasses on the atomic scale, utilizing a novel coherent technique. This new method, called atomic-scale X-ray Photon Correlation Spectroscopy or aXPCS, has only recently been proven to be able to capture diffusion processes with atomic resolution in crystal systems. With this new toolkit for studying atomic diffusion in amorphous systems, new insight into basic processes in a wide range of technically relevant materials, like fast ionic conductors, can be obtained.
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|a Physics.
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|a Condensed matter.
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|a Spectroscopy.
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|a Microscopy.
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|a Physics.
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|a Spectroscopy and Microscopy.
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|a Ceramics, Glass, Composites, Natural Methods.
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|a Condensed Matter Physics.
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|a SpringerLink (Online service)
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|t Springer eBooks
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|i Printed edition:
|z 9783319286440
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|a Springer Theses, Recognizing Outstanding Ph.D. Research,
|x 2190-5053
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|u http://dx.doi.org/10.1007/978-3-319-28646-4
|z Full Text via HEAL-Link
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|a ZDB-2-PHA
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|a Physics and Astronomy (Springer-11651)
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