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082 _ _ |a 530
100 1 _ |a Rek, Zlatko
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111 2 _ |a EUROTHERM 2024
|c Bled
|d 2024-06-10 - 2024-06-13
|w Slovenia
245 _ _ |a Numerical simulations of temperature loads on multilayer Laue lenses
260 _ _ |a Bristol
|c 2024
|b IOP Publ.
300 _ _ |a 7
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520 _ _ |a We present numerical simulations of the heat loads on novel diffractive X-ray optics, known as multilayer Laue lenses, exposed to high intensity X-ray beams produced by an X-ray free electron laser (XFEL). These lenses can be used to focus XFEL beams to nanometer spots. The temperature distribution within the lens and temperature change as a function of incident pulse frequencies were calculated for two different lens geometries and several material pairs and material ratios of the MLLs. Simulations took into account the special pulse structure of European XFEL with X-rays being delivered in pulse trains. After defining the geometric model, computational grid, material properties, and boundary conditions, a grid sensitivity study was carried out. We solved the transient heat energy transport equation in solids for mixed boundary conditions. Results of these simulations will help select materials and lens geometry for future XFEL experiments.
536 _ _ |a 633 - Life Sciences – Building Blocks of Life: Structure and Function (POF4-633)
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542 _ _ |i 2024-05-01
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542 _ _ |i 2024-05-01
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700 1 _ |a Chapman, Henry N.
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700 1 _ |a Bajt, Sasa
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700 1 _ |a Sarler, Bozidar
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773 1 8 |a 10.1088/1742-6596/2766/1/012034
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|t Journal of Physics: Conference Series
|v 2766
|y 2024
|x 1742-6588
773 _ _ |a 10.1088/1742-6596/2766/1/012034
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Centre for Free-Electron Laser Science
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910 1 _ |a European XFEL
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Centre for Free-Electron Laser Science
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910 1 _ |a European XFEL
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910 1 _ |a External Institute
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|6 P:(DE-H253)PIP1087069
910 1 _ |a European XFEL
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913 1 _ |a DE-HGF
|b Forschungsbereich Materie
|l Von Materie zu Materialien und Leben
|1 G:(DE-HGF)POF4-630
|0 G:(DE-HGF)POF4-633
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914 1 _ |y 2024
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999 C 5 |1 Bajt
|y 2018
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|o Bajt 2018
999 C 5 |a 10.1107/S1600576720006925
|9 -- missing cx lookup --
|1 Morgan
|p 927 -
|2 Crossref
|t J. Appl. Cryst.
|v 53
|y 2020
999 C 5 |a 10.1038/s41377-023-01176-5
|9 -- missing cx lookup --
|1 Li
|p 130 -
|2 Crossref
|t Light: Science & Applications
|v 12
|y 2023
999 C 5 |1 Prasciolu
|y 2021
|2 Crossref
|o Prasciolu 2021
999 C 5 |1 Prasciolu
|y 2022
|2 Crossref
|o Prasciolu 2022
999 C 5 |a 10.3390/app8040571
|9 -- missing cx lookup --
|1 Prasciolu
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|t Appl. Sci.
|v 8
|y 2018
999 C 5 |a 10.3390/photonics9050362
|9 -- missing cx lookup --
|1 Rek
|p 362 -
|2 Crossref
|t Photonics
|v 2029
|y 2022
999 C 5 |2 Crossref
|o
999 C 5 |1 Incropera
|y 2002
|2 Crossref
|o Incropera 2002
999 C 5 |1 Roache
|y 1998
|2 Crossref
|o Roache 1998


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